Showing posts with label Audi. Show all posts
Showing posts with label Audi. Show all posts

Friday, March 4, 2011

World Car Awards top three

Following the announcement of the World Car Awards finalists at the beginning of February, the jurors have voted once again to decide the top three candidates in each category.



There’s now a short wait until the New York International Auto Show, which begins on 22 April, to find out the winners.



The three models up for each award - in alphabetical order - are:



2011 World Car of the Year



· Audi A8

· BMW 5 Series

· Nissan Leaf






BMW 5 Series Saloon


The outsider here is probably the Audi, but whether enough jurors have been swayed by the Leaf remains to be seen. Many might have been reluctant to give their votes to the Nissan because, despite its green credentials, it nevertheless represents first generation electric car technology which comes with associated issues of purchase price, recharging time and range.



2011 World Performance Car



· Ferrari 458 Italia

· Mercedes-Benz SLS AMG

· Porsche 911 Turbo






Ferrari 458 Italia


It’s difficult to foresee the Ferrari not winning this category.



2011 World Car Design of the Year



· Alfa Romeo Giulietta

· Aston Martin Rapide

· Ferrari 458 Italia






Aston Martin Rapide


Perhaps the surprise here is that the Citroën DS3, which was in the top ten shortlist, hasn’t make it through to the top three. Naturally this is a very subjective category but, from an aesthetic perspective, surely the Aston Martin just about beats the other contenders?



2011 World Green Car



· BMW 320d Efficient Dynamics Edition

· Chevrolet Volt

· Nissan Leaf






Chevrolet Volt


This award is hard to predict, because the three finalists represent three very different technologies: internal combustion, range extender and pure electric. However, because the Volt combines the benefits of battery power with a total absence of range anxiety, it deserves to clinch the title.



Related post:

World Car Awards finalists

Wednesday, February 2, 2011

World Car Awards finalists

Sixty-six jurors from across the world have completed a first round of voting to determine the 2011 World Car Awards finalists.



With four different awards up for grabs, the shortlist models - in alphabetical order - are:





2011 World Car of the Year



  • Audi A1

  • Audi A8

  • BMW 5 Series

  • BMW X3

  • Jaguar XJ

  • Jeep Grand Cherokee

  • Mercedes-Benz SLS AMG

  • Nissan Leaf

  • Porsche Cayenne

  • Volvo S60 / V60



Obviously, this is the big prize. Each of the finalists will be judged on ‘overall merit, value, safety, environmental responsibility, emotional appeal and significance’, a combination that has lead to some previous winners being very worthy but also just a bit dull.



What’s striking is that 2011’s entire crop is from premium or, in the case of the Volvo and Jeep, semi-premium manufacturers. Even the Nissan isn’t exactly mainstream, given its relatively high price.



The Leaf could well repeat its 2011 European Car of the Year victory, but it does tend to divide opinion. There are those who believe it almost makes petrol or diesel cars obsolete, while others won’t back an all-electric car until both battery range and the recharging infrastructure improve.







It’s hard to see either the SLS AMG or Cayenne winning, given their comparative lack of environmental responsibility. The BMW 5 Series has to be a contender given its all-round ability, but it would be good to see the Jaguar XJ clinch it, simply because it represents such a brave departure from previous generation XJ models.



Audi’s A1 probably ticks all the boxes. However, it’d be a shame for it to win because it’s essentially a tarted-up version of last year’s World Car of the Year, the Volkswagen Polo.





2011 World Performance Car



  • Aston Martin Rapide

  • Audi RS 5 Coupe

  • Cadillac CTS-V Coupe

  • Ferrari 458 Italia

  • Lamborghini Gallardo Superleggera

  • Mercedes-Benz S63 AMG / CL 63 AMG

  • Mercedes-Benz SLS AMG

  • Porsche 911 GT2 RS

  • Porsche 911 Turbo

  • Renault Mégane Renaultsport 250



This category is wide open, as it includes everything from a compact hot hatch to numerous supercars for the jurors to choose from. Audi has won the performance car award three times in the past five years, but it’ll be a surprise if the feat is repeated with the RS 5.









2011 World Car Design of the Year



  • Alfa Romeo Giulietta

  • Aston Martin Rapide

  • Audi A7

  • Citroën DS3

  • Ferrari 458

  • Honda CR-Z

  • Kia Sportage

  • Nissan Juke



There were originally fifty-one candidates in this category, which is expected to ‘highlight new vehicles with innovation and style that push established boundaries’ - a demanding set of criteria.



On that basis, the Aston Martin would seem to be a strong challenger, but arguably it’s the Nissan Juke that truly stands out as a unique design.



The shortlist was decided by a panel of five design experts but, as with all of the other awards, it’s now solely up to the jurors to arrive at a winner.







2011 World Green Car



  • BMW 320d Efficient Dynamics Edition

  • Chevrolet Volt

  • Hyundai Sonata Hybrid

  • Mercedes-Benz B-Class F-Cell

  • Nissan Leaf

  • Smart electric drive



Three environmental experts were asked to draw up the finalists for this award based on emissions, fuel consumption and the power plant technology employed.



Perhaps the Leaf stands a stronger chance of winning this category, but it may be the case that more jurors consider the Volt’s range extender concept as being more practical for everyday use.







But with its 109 g/km and combined cycle 68.9 mpg (4.0 l/100km), the 320d Efficient Dynamics Edition proves that cars with a traditional internal combustion engine can still be impressively green.







The next stage is that during February the jurors will vote again, but this time just on the finalists.



Following that ballot, the top three cars in each category will be announced at the Geneva International Motor Show on 1st March.



Then, bringing the process to a close, the 2011 World Car Awards winners will be declared during the New York International Auto Show in April.

Tuesday, February 1, 2011

Audi RS5 by Senner Tuning


Senner tuning has a new package for the Audi RS5 that adds more than 50 horses to the super sport coupe.

First off is the power upgrade on the 4.2 liter V8 FSI engine which is achieved by the addition of a valve-controlled stainless steel exhaust system and ajustments to the zero-pressure monitoring. By those means, the German tuner dials output up to 506 PS (372 kW / 499 bhp) and 478 Nm (353 lb-ft) from the series 450 PS (331 kW / 444 bhp). The top speed limiter is also lifted to 280 km/h from the factory 250 km/h setting. Senner even offers to raise it even further to 300 km/h if the car is equipped with the proper tires.

That power boosting makes the Senner-tuned RS5 good for a 0 to 100 km/h sprint time of just 4.2 seconds.

Senner Tuning also adds a B16 PSS10 Bilstein coilover suspension kit with 10-stage adjustable damping for both the compression and rebound cycles.

The tuner then fits the RS5 with 20-inch wheels, 9.5 x 20 for the front and 11 x 20 at the rear, wrapped in Vredestein Ultrac Sessanta (XL) tires in 255/30R20 and 295/25R20 dimensions, front and back respectively. For demonstration, the car pictured here features two sets of rims - Spider SC1's on the driver's side and Varianza T1S on the passenger's.

There's also carbon fabric side mirrors, a new front grille and window frames in Black Edition trim.

For the cabin, the tuner also offers additional carbon fiber and leather trims upon request.

Price for the total package including the fitting, taxes and registration in Germany is €132,800.

Monday, January 31, 2011

Audi Q7 by MR Car Design


MR Car design has a tuning kit that turns the Audi Q7 4.2 TDI into the 'Floating on a Cloud Q-Seven'.

The German tuner, headed by Marc Reilly, starts with a few touches to the body including new LED daytimers and LED indicator strips.

For an output upgrade, the 4.2 liter TDI diesel engine gets a new K & N air filter and some ECU optimization that dials power up to 374 PS/275 kW (series 326 PS/240 kW) and 870 Nm (642 lb-ft) of torque (series 760 Nm/560 lb-ft). MR Car Design also offers to lift the "tiresome" (as they describe it) Vmax and remove any electronic speed limit.

The Erftstadt-based tuner provides the Q7 with new 22-inch alloy wheels, MRGT22, in 9.5 x 22 dimensions with Icebear (polar bear) W300 tires sized 265/35R22. Electronic suspension lowering is also on offer.

For the cabin, customers can opt to borrow the steering wheel from the current Audi RS6 - a special request option by MR Car Design.

Audi A1 1.4 TSI by Senner Tuning


Senner Tuning has unveiled a new styling and performance package for the Audi A1 1.4 TSI.

To give the car some extra pep, the tuner installed a new air box, a revised ECU, and a stainless steel dual exhaust system. Thanks to these tweaks, the four-cylinder engine produces 115 kW (156 PS / 154 hp) and 250 Nm (184 lb-ft) of torque - an increase of 25 kW (34 PS / 34 hp) and 50 Nm (37 lb-ft).

On the design front, the car boasts a 35mm reduced ride height and 18-inch Corniche Monza wheels with Hankook S1 Evo tires.

The package is priced from €4,590 ($6,125), but owners can opt for additional items including a sport suspension, carbon fiber trim, and LED tail lights.

Sunday, January 30, 2011

831 PS Audi RS6 Avant

As standard, the now discontinued Audi RS6 Avant came with a BMW M5-beating 571 bhp (426 kW / 579 PS) from its 5.0 litre twin-turbo V10 engine.





But now a couple of UK tuners have gotten together to raise that to a massive 819 bhp (611 kW / 831 PS), also increasing torque by over 50% to 977 Nm (720 lb/ft) in the process.



Dorset-based Turbo Dynamics is responsible for fettling the turbochargers, while MRC Tuning of Banbury adds a Stage 3 remap for the ECU, a new fuelling kit, 3” down pipes and revised air intakes.





The result is a 0-60 mph (96 km/h) time of just 3.6 seconds, plus an electronically limited top speed of 217.5 mph (350 km/h).



For anyone tempted to get hold of a used RS6 to convert, there are currently over twenty examples listed on Auto Trader. Prices start at just under £47,000.

Tuesday, January 25, 2011

Business Car of the Year

UK publication Business Car has announced the winners of its 2011 Awards, which were voted for by readers rather than being decided by a jury.



It was a successful haul for the BMW Group as it took top honours in six out of the thirteen vehicle categories, as well as being declared overall manufacturer of the year. Clearly desirability, solid residuals, decent fuel economy and low CO2 emissions are all attributes that continue to keep both drivers and fleet managers happy.





Business Car Awards 2011 winners



Vehicle categories



Manufacturer of the Year: BMW



Business Car of the Year: BMW 5 Series





Green Model of the Year: BMW 320d Efficient Dynamics

City Car: Fiat 500

Supermini: Mini

Lower Medium: Audi A3

Upper Medium: BMW 3 Series

Executive: BMW 5 Series

Luxury: Jaguar XJ

Large 4x4: BMW X5

Small 4x4: Audi Q5

Mini-MPV: Volkswagen Touran

MPV: Ford S-MAX

Sporting Car: Audi R8



Service supplier categories



Service Supplier of the Year: Lex Autolease



Accident Management: The AA

Daily Rental: Enterprise

Fast-Fit: Kwik-Fit Fleet

Insurance: Aviva

Leasing and Fleet Management: Lex Autolease

Saturday, January 22, 2011

Top 10: Irish car sales 2010

According to figures published by the Society of the Irish Motor Industry, 88,373 cars were sold in Ireland during 2010.



That was almost 55% more than 2009’s figure of 57,118, an encouraging increase achieved in spite of harsh economic conditions. However, the market still has a long way to go before it recovers to the volumes seen in 2008, when sales topped 150,000.



2010’s performance was undoubtedly helped by the scrappage scheme, which accounted for over 17,000 registrations. Good news for the industry is that the programme will continue until the end of June 2011, although the amount of support - which is applied via Vehicle Registration Tax relief - is reduced from €1,500 to €1,250.



The top three manufacturers remained unchanged in 2010, with Ford selling the most cars followed by Toyota and then Volkswagen.



Fourth spot went to Renault, which trebled its sales thanks partly to being the manufacturer with the most scrappage scheme reclaims. Skoda also recorded a notable result but, despite a doubling of volumes, it only moved up one place to seventh on the league table.

















Top 10: Irish Car Sales By Manufacturer
Position Manufacturer 2010 2009 +/- % +/-
1 Ford 11,215 8,121 3,094 38.1%
2 Toyota 10,660 7,603 3,057 40.2%
3 Volkswagen 10,301 6,174 4,127 66.8%
4 Renault 9,746 2,414 7,332 303.7%
5 Opel 6,603 4,046 2,557 63.2%
6 Nissan 5,494 4,684 810 17.3%
7 Skoda 4,915 2,390 2,525 105.6%
8 Hyundai 2,959 1,665 1,294 77.7%
9 Peugeot 2,924 1,766 1,158 65.6%
10 Audi 2,723 2,388 335 14.0%
Figures provided by SIMI Statistical Service

Wednesday, January 19, 2011

Audi Coupe GT, 1985

Audi Coupe GT, 1985



The Audi Coupe GT was a 2-door sports car produced and sold by Audi from 1981 to 1987. The car was an attempt by Audi to offer a more affordable version of its turbocharged, all-wheel drive Quattro. The Coupe GT featured a similar body shape to the Quattro, but without the knife-edged fender flares of the more expensive car. Mechanically, the biggest changes from the Quattro to the GT were the use of a naturally aspirated 5-cylinder engine and a front-wheel drive drivetrain.

The Audi Coupe range was fitted with the quattro All Wheel Drive system from late 1984 to produce the Audi Coupe quattro, a model which was rarer than the Turbocharged Quattro mode

Audi Sport quattro S1, 1985

Audi Sport quattro S1, 1985


The Audi Sport Quattro S1 was introduced at the end of 1984 as an update to the Audi Sport Quattro. The car featured a inline 5-cylinder engine that displaced 2,110 cc (128.8 cu in) and produced an officialy quoted figure of 350 kW (480 PS/470 bhp). However, the turbocharger utilised a recirculating air system, with the aim of keeping the turbo spinning at high speed, and the actual figure was in excess of 500 bhp (373 kW/507 PS) at 8000 rpm. In addition to the improved power output, an aggressive aerodynamic kit was added that featured very distinctive wings and spoilers to the front and rear of the car to increase downforce. The weight was lightened to just 1,090 kg (2,403 lb), and now accelerate from 0-100 km/h (62 mph) in just 3.1 seconds.

Some of the cars were supplied with a "power-shift gearbox", which is said to be a forerunner of today's Direct-Shift Gearbox (DSG) technology.

The S1 proved to be an immediate success in the rally circuit, helping Walter Röhrl and Christian Geistdörfer win the 1985 San Remo Rally. A modified version of the S1, was also driven by Michèle Mouton. The S1 evolution would become the final Group B car produced by Audi, with the works team withdrawing from the Championship following the 1986 rally in Portugal.

Twenty years after the cancellation of Group B, the Sport Quattro S1 was still widely regarded as the most powerful rally car ever fielded in international competition, with the final factory machines of 1986 rated at an incredible 441 kW (600 PS/591 bhp).

In addition to Group B competition, the S1 won the 1985 Pikes Peak International Hill Climb with Michèle Mouton in the driving seat, setting a world record time in the process. This victory was repeated in 1987, this time at the hands of Walter Röhrl, and again in 1988 (Michèle Mouton) and 1989 (Bobby Unser), completing a hat-trick.

Tuesday, January 18, 2011

2011 Audi Sports Cars Racing R18 TDI

2011 Audi Sports Cars Racing R18 TDI
With the new R18 Audi Sports Cars is aiming for its tenth Le Mans success in 2011: Since its debut in 1999, the brand with the Four Rings has won the world’s most important endurance race as many as nine times with the R8, R10 TDI with muscular torque delivery and outstanding efficiency: TDI. Today, TDI engines are sporty, smooth and economical. The international endurance sports car racing for the last decade, there’s really just one name that has defined the discipline during that timeframe: Audi. The German nameplate that cleaned house in rallying and sedan racing before making the quantum leap to sports prototypes in 1999 has made success at the 24 Hours of Le Mans and other races around the globe look like a piece of strudel.
2011 Audi Sports Cars Racing R18 TDI
The R18's headlights, which are the first to completely consist of LEDs with optimized amount of light, are a technical highlight. The new generation of headlights was developed in close cooperation between Audi Sport Cars and the Technical Development (TE) division of AÚDI AG and by using at Le Mans, will be prepared for future use in production vehicles. Audi's light designers had the chance to make their mark on the development as well: The LEDs of the daytime light form the shape of a '1' which is intended to inspire associations with Audi's historic brand logo.
2011 Audi Sports Cars Racing R18 TDI he has made is configured as electrification continuous tense, the Audi Sport plans for pushing forward step by step. ”Only the efficiency of all of the time factor is very important to us,” says Dr Wolfgang Ullrich.” No matter who is the recovery of energy we can choose a key aspect for the Audi – in motorsport as well as on the production side of the house – is that it gives a real advantage.”
2011 Audi Sports Cars Racing R18 TDI
Significantly smaller engines than those used before will be prescribed at Le Mans in 2011 as the rule makers aim to achieve a substantial reduction of engine power. By opting for a 3.7-liter V6 TDI unit, Audi retains the diesel concept that saw its first victorious fielding in 2006. ‘From our point of view, the TDI continues to be the most efficient technology,’ says Úlrich Baretzky, Head of Engine Development at Audi Sport Cars. ‘There are good reasons why the share of TDI units among Audi’s production models is as high as it is.’
Through the innovative V6 TDI engine for the Le Mans 24 Hours, motorsport is yet again performing pioneering work for the production arm at Audi where there is a growing trend towards smaller, more economical but yet powerful engines. Another new development is the six-speed transmission in the R18 which has been specifically modified for use with the smaller engine. Development of new Audi R18 began in mid-2009. V6 TDI engine has been running on dynamometers since the summer of 2010. The 2011 Audi Sports Cars Racing R18 TDI, with Allan McNish at the wheel, has achieved the first essay on horse racing at the end of November.
The racing debut of the Audi R18 racing planned for Spa-Francorchamps (Belgium) 6 hours on 8 May 2011. Before the show, fresh bequeath prototype consists of a round-bodied fray first on the race track at Le Mans for the official test day on April 24, and collect important data for the race on June 11 and 12 2011.
2011 Audi Sports Cars Racing R18 TDI
Audi plans to field three cars at Le Mans the 2011 Audi Sports Cars Racing R18 TDI, which will be entered by Audi Sport Team Joest, the most successful Le Mans team of all time. In addition, Audi Sport Team Joest will contest the Le Mans World Cup (ILMC), owned by seven airstreams absolute survival in three continents (recognizes the Le Mans 24 Hours) with two cars.In the opening race at Sebring on March 19, the team will use two “R15 plus plus” car.”Send the R18 into the race at such a starting point for prospective difficulties in logistics and conditions by placing with our development program,” said Head of Audi Motorsport Dr Wolfgang Ullrich.

Sunday, January 16, 2011

2011 What Car? Awards

UK publication What Car? has announced its 2011 Car of the Year winners.



During a ceremony held at the Grosvenor House Hotel, London, prizes were awarded across seventeen vehicle categories, with one model going on to be declared overall champion.



Supermini



Shortlist

Best buy less than £9,000: Hyundai i10 1.2 Comfort

Best buy £9,000 - £13,000: Ford Fiesta 1.25 82 Zetec 5dr

Best buy more than £13,000: Audi A1 1.4 TFSI Sport



Winner

Audi A1 1.4 TFSI Sport





Small family car



Shortlist

Best buy less than £15,000: Skoda Octavia 1.2 TSI SE

Best buy £15,000 - £20,000: Volkswagen Golf 1.4 TSI 122 Match 5dr

Best buy more than £20,000: Toyota Prius 1.8 VVT-i T3



Winner

Volkswagen Golf 1.4 TSI 122 Match 5dr





Family car



Shortlist

Best buy less than £18,000: Skoda Superb 1.4 TSI S

Best buy £18,000 - £21,000: Ford Mondeo 2.0 TDCi 140 Zetec

Best buy more than £21,000: Volkswagen Passat 2.0 TDI 140 SE



Winner

Ford Mondeo 2.0 TDCi 140 Zetec





Estate car



Shortlist

Best buy less than £16,500: Skoda Octavia Estate 1.4 TSI SE

Best buy £16,000 - £22,000: Ford Mondeo Estate 2.0 TDCi 140 Zetec

Best buy more than £22,000: BMW 5 Series Touring 520d SE



Winner

Ford Mondeo Estate 2.0 TDCi 140 Zetec





MPV



Shortlist

Best buy less than £16,000: Citroën C3 Picasso 1.6 VTi VTR+

Best buy £16,000 - £22,000: Peugeot 5008 1.6 HDi 112 Sport

Best buy more than £22,000: Seat Alhambra 2.0 TDI 140 Ecomotive S



Winner

Seat Alhambra 2.0 TDI 140 Ecomotive S





Hot hatch



Shortlist

Best buy less than £15,000: Renault Twingo Renaultsport 133 Cup

Best buy £15,000 - £20,000: Renault Clio Renaultsport 200 Cup

Best buy more than £20,000: Renault Mégane Renaultsport 250 Cup



Winner

Renault Mégane Renaultsport 250 Cup





Coupé



Shortlist

Best buy less than £25,000: Volkswagen Scirocco 1.4 TSI 160

Best buy £25,000 - £40,000: Audi TT 2.0 TFSI 211 Sport

Best buy more than £40,000: Jaguar XKR



Winner

Audi TT 2.0 TFSI 211 Sport





Open-top



Shortlist

Best buy less than £25,000: Mazda MX-5 1.8i SE AC

Best buy £25,000 - £35,000: BMW Z4 sDrive23i

Best buy more than £35,000: Mercedes-Benz E350 CDI Cab Blue Efficiency SE



Winner

BMW Z4 sDrive23i





Performance car



Shortlist

Best buy less than £60,000: Lotus Evora 3.5 V6

Best buy £60,000 - £120,000: Audi R8 Spyder V10

Best buy more than £120,000: Ferrari 458 Italia



Winner

Ferrari 458 Italia





Crossover



Shortlist

Best buy less than £15,000: Nissan Juke 1.6 Visia

Best buy £15,000 - £20,000: Peugeot 3008 1.6 THP 156 Sport

Best buy more than £20,000: Volvo XC60 2.0 D3 DRIVe SE



Winner

Peugeot 3008 1.6 THP 156 Sport





4x4



Shortlist

Best buy less than £30,000: Hyundai Santa Fe 2.2 CRDi Style 7 seats

Best buy £30,000 - £40,000: BMW X3 xDrive20d SE

Best buy more than £40,000: Land Rover Discovery 3.0 SDV6 XS



Winner

Land Rover Discovery 3.0 SDV6 XS





Compact executive



Shortlist

Best buy less than £25,000: BMW 3 Series 316d ES

Best buy £25,000 - £30,000: BMW 3 Series 320d ES

Best buy more than £30,000: BMW 3 Series 330d SE



Winner

BMW 3 Series 320d ES





Executive car



Shortlist

Best buy less than £30,000: BMW 5 Series 520d SE

Best buy £30,000 - £40,000: Jaguar XF 3.0D V6 Luxury

Best buy more than £40,000: Audi A7 Sportback 3.0 TDI 245 quattro SE



Winner

Jaguar XF 3.0D V6 Luxury





Luxury car



Shortlist

Best buy less than £65,000: Mercedes-Benz S-Class S350 CDI BluTEC

Best buy £65,000 - £100,000: Range Rover 4.4 TDV8 Vogue 

Best buy more than £100,000: Rolls-Royce Phantom



Winner

Mercedes-Benz S-Class S350 CDI BluTEC





Ultra-low carbon car



Winner

Nissan Leaf





Safety Award



Winner

Volvo for Pedestrian Detection with Full Auto Brake





Security Award



Winner

Volkswagen





What Car? Car of the Year 2011



Winner

Audi A1 1.4 TFSI Sport

Tuesday, January 11, 2011

Detroit 2011: Audi A6 Hybrid is Teutonic efficiency



While we have already met the 2012 Audi A6, we weren't clear on what the A6 Hybrid would look like. As it turns out, we had a pretty solid idea, as Audi officials say they have gone out of their way to keep it aesthetically true to the conventional gas-powered model.

The new A6 hybrid is a front-wheel drive affair that offers Audi's 2.0-liter TFSI four-cylinder with a 45-horsepower/155 pound-feet of torque electric motor sitting ahead of the eight-speed Tiptronic gearbox. A modest 1.3 kilowatt-hour lithium-ion battery pack is resident in the trunk to generate 39 kW. Audi quotes an estimated combined fuel economy rating of 38 miles per gallon, noting that the A6 Hybrid can be coaxed up to 62 mph strictly on electricity, and it has a pure-electric range of three kilometers (1.86 miles).

Audi isn't confirming when this new model will go on sale, but it is widely understood that the gas-electric model was conceived with the U.S. in mind, so we wouldn't be surprised to see it roll into American dealerships before it hits the rest of the globe.

Detroit 2011: 2012 Audi A6 is predictably handsome



Audi has unveiled its mid-range 2012 A6 sedan, and as we learned from advanced photos, it follows closely in the mold of its big brother, the A8. As the range-topping sedan is a pretty piece, that's not a bad thing, but Audi seems to be channeling BMW's old "One sausage, three sizes" design mantra of decades ago. In this case, that means a massive single-frame grille, available LED headlamps (as shown), and a relatively simple and unadorned profile that lends the A6 a premium look that will likely wear well over the years.

The new A6 will be available globally with two gas engines and three TDI diesel powerplants, as well as a front-wheel drive-only hybrid model. The most powerful gasoline-fed model will be the 3.0-liter TFSI Quattro, packing 300 horsepower and 325 pound-feet of torque, routed through a seven-speed S tronic automatic.

Saturday, January 8, 2011

Zero Congestion Charge

In a rare piece of good news for motorists, the beginning of 2011 saw a change to the London Congestion Charge that could see some drivers now (legally) avoiding the fee altogether.



The new Greener Vehicle Discount, which replaces the Alternative Fuel Discount, means that more cars will potentially qualify for 100% off the daily charge.



Naturally, there are a couple of caveats that come attached with this generous gesture from Transport for London.



The first is that the vehicle needs to be ‘green’. More precisely, it should be Euro 5 emissions compliant and produce 100 grams of CO2 per kilometre or less.



Secondly, if you already own such an eco-friendly machine, don’t presume that you can just swan about in central London and not worry about the Congestion Charge. To receive the Greener Vehicle Discount, a car must first be registered with Transport for London, and that involves a £10 annual payment.



So, what cars will qualify for the Greener Vehicle Discount? According to the Vehicle Certification Agency, the models that currently meet the criteria are:












































Manufacturer Model Specification Transmission Fuel CO2 g/km
Audi A3 1.6 TDI 105PS Stop Start M5 Diesel 99
Citroën DS3 1.6HDi 90hp w/ energy saving tyres M5 Diesel 99
Citroën New C3 1.6HDi 90hp Airdream+ M5 Diesel 99
Fiat 500 / 500C (2010 on) TwinAir M5 Petrol 95
Fiat 500 / 500C (2010 on) TwinAir Dualogic SAT5 Petrol 92
Fiat Punto Evo (Jan 2010 on) 1.3 16v MultiJet 85 ECO M5 Diesel 95
Ford Fiesta (Post 2010¼) 1.6 Duratorq 95PS +DPF ECO M5 Diesel 98
Hyundai i10 1.0l SOHC M5 Petrol 99
Mini Hatchback One D w/ DPF M6 Diesel 99
Mini Hatchback Cooper D w/ DPF M6 Diesel 99
Seat Ibiza ST 1.2 CR TDI 75PS Ecomotive M5 Diesel 92
Seat Leon 1.6 CR TDI 105PS Ecomotive M5 Diesel 99
Skoda New Fabia Hatch 1.2 CR TDI 75PS GreenLine II M5 Diesel 89
Skoda New Fabia Estate 1.2 CR TDI 75PS GreenLine II M5 Diesel 89
Skoda New Fabia Estate 1.2 TDI 3 cylinder 75PS GreenLine M5 Diesel 89
Smart fortwo cabrio (MY 2011) 54 bhp cdi w/ Softip & 15" rear wheels 5 AMT Diesel 86
Smart fortwo cabrio (MY 2011) 54 bhp cdi w/ Softouch & 15" rear wheels 5 AMT Diesel 87
Smart fortwo cabrio (MY 2011) 71 bhp mhd w/ Softip & 15" rear wheels 5 AMT Petrol 99
Smart fortwo cabrio (MY 2011) 71 bhp mhd w/ Softouch & 15" rear wheels 5 AMT Petrol 100
Smart fortwo coupé (MY 2011) 54 bhp cdi w/ Softip & 15" rear wheels 5 AMT Diesel 86
Smart fortwo coupé (MY 2011) 54 bhp cdi w/ Softouch & 15" rear wheels 5 AMT Diesel 87
Smart fortwo coupé (MY 2011) 71 bhp mhd w/ Softip & 15" rear wheels 5 AMT Petrol 97
Smart fortwo coupé (MY 2011) 71 bhp mhd w/ Softouch & 15" rear wheels 5 AMT Petrol 98
Toyota iQ (MY 2011) 1.0 VVT-i M5 Petrol 99
Toyota Auris Hybrid (MY 2010) T4 89g 1.8 VVT-i E-CVT Petrol Hybrid 89
Toyota Auris Hybrid (MY 2010) T4 1.8 VVT-i E-CVT Petrol Hybrid 93
Toyota Auris Hybrid (MY 2010) T Spirit 1.8 VVT-i E-CVT Petrol Hybrid 93
Toyota Prius (MY 2009) T4 1.8 VVT-I E-CVT Petrol Hybrid 92
Toyota Prius (MY 2009) T3 1.8VVT-I E-CVT Petrol Hybrid 89
Toyota Prius (MY 2009) T Spirit 1.8 VVT-I E-CVT Petrol Hybrid 92
Toyota Prius (MY 2009) T Spirit w/ Solar Panel 1.8VVT-I E-CVT Petrol Hybrid 89
Volkswagen New Polo 1.2 TDI 75PS BlueMotion M5 Diesel 89
Volkswagen New Golf 1.6 TDI 105PS BlueMotion M5 Diesel 99
Volvo C30 (MY 2011) DRIVe M6 Diesel 99
Volvo C30 (MY 2011) DRIVe M6 Diesel 99
Volvo S40 (MY 2010) DRIVe M6 Diesel 99
Volvo S40 (MY 2011) DRIVe M6 Diesel 99
Volvo V50 (MY 2011) DRIVe M6 Diesel 99
NB: Electric and plug-in hybrid cars aren’t eligible for the Greener Vehicle Discount - they have their own discount scheme.


It’s worth bearing in mind that Transport for London has committed to review the Greener Vehicle Discount in the future, so that eventually only vehicles emitting 80 g/km or less qualify. This tweak will be introduced ‘when the time is right’, but the first reassessment of the discount has been confirmed for 2012.



And finally, the area covered by the Congestion Charge is now much smaller, following the scrapping of the Western Extension zone on 4th January 2011:





Related posts:

Congestion Charge change

London Congestion Charge

Thursday, January 6, 2011

Audi A4 allroad quattro, 2010

Audi A4 allroad quattro, 2010

 
 With its permanent all-wheel drive and increased ground clearance, the Audi A4 can handle any road or trail; it also offers driving pleasure - even on unpaved surfaces. Naturally, the Audi A4 allroad quattro features all the innovative technologies which impart to the A4 model line its superiority: a range of powerful and highly energy-efficient engines, Audi drive select (intelligent handling technology), the high-tech S tronic transmission, and innovative communication and assistance systems. The vehicle will be available in early summer at a basic price of 37,100 euros.

The design of the Audi A4 allroad quattro recalls the Audi A4 Avant: crisp lines enclose tastefully curved surfaces and the low roof line establishes a coupé-like silhouette. Striking details re-interpret this model line's sporty elegance. The moon-gray single-frame radiator grille bears vertical chrome strips; an accentuated bumper and large air inlets underscore this vehicle's unique identity. Chrome rings encircle the fog lights. And in the option featuring xenon plus headlights, light-emitting diodes comprise the daytime running lights and taillights. Underneath the front end and tail end, the A4 allroad has a stainless-steel underbody guard.

Interior
Refined touches, uncompromising quality and flawless functionality: the interior of the Audi A4 allroad quattro embodies all the strengths for which Audi is renowned. The cockpit clearly serves the driver. Among the control unit's highlights: the standard electromechanical handbrake - which has replaced the lever on the center console with a button - and the central on-board monitor. A color display complements the concert or symphony sound system, or the MMI navigation system plus; the MMI's offset control unit is housed in the center console.

Customers can choose one of several different trim materials: an exclusive allroad fabric, two types of leather, or an Alcantara/leather combination. The fabric designs are available in two colors and the leather trim in seven colors (two of which feature sporty contrasting stitching). Standard inlays are micrometallic platinum; options include aluminum trigon, natural fine-grain ash, laurel nutmeg, and walnut brown. Carpeting is made of velour; the headlining is star silver, linen beige, or black (optional). Many of the operating controls gleam thanks to their standard aluminum look; the door sill trims bear special allroad logos.

The Engines
Audi will initially offer three different engines for the Audi A4 allroad quattro: a gasoline engine and two diesel engines. All three are turbocharged direct-fuel-injection engines. They command respect due to excellent performance, impressive pulling power, smooth running, and high fuel efficiency. The engines are further bolstered by pioneering technologies arising from Audi's modular efficiency expertise. For example, all three units boast a standard on-board recuperation system, which converts mechanical energy into electrical energy during deceleration.

The Driveline
The 2.0 TDI transmits its power to a six-speed manual transmission. The 3.0 TDI and 2.0 TFSI feature the next generation of Audi's dynamic and very efficient S tronic. This innovative dual-clutch transmission switches extremely smoothly among its seven gears within a few hundredths of a second. S tronic also excels thanks to its high efficiency ratio and a broad spread of the gear ratios. The seven-speed S tronic has a fully automatic mode at the ready: the driver can shift as required, if necessary via shift paddles on the steering wheel.

The differential is in front of the clutch and immediately behind the engine. This technical stroke of genius made it possible to reposition the front axle much closer to the vehicle's front end, in turn allowing for a long wheelbase and an ideal distribution of the axle loads. The benefits include steady straight-line stability, superb ride comfort, and excellent driving dynamics.

The Audi A4 allroad quattro features quattro permanent all-wheel drive as standard equipment. Its purely mechanical center differential favors the rear, distributing power at a 40:60 ratio to the front and rear axle. If necessary, the quattro permanent all-wheel drive can route up to 65 percent to the front or as much as 85 percent toward the tail end.

The Chassis
The width of the Audi A4 allroad quattro lays the foundation for its driving dynamics. The car's track is 1,583 mm (62.32 in.) at the front and 1,574 mm (61.97 in.) at the rear - some 20 mm (0.79 in.) wider, respectively, than the A4 Avant. The body is higher on account of a new chassis with longer springs, which - like the new shock absorbers - combine sportiness with comfort. The standard, 17-inch lightweight alloy wheels are fitted with 225/55 tires. At a diameter of 690 millimeters (27.17 inches), even this standard configuration looks rather imposing. For the time being, Audi is also offering 18-inch wheels.

The chassis in the Audi A4 allroad quattro retains all the advantages which distinguish the A4 model line. Steering is straightforward and responsive. A steering box beneath the wheel conveys the driver's input directly to the wheels. The five-link front suspension and the self-tracking trapezoidal-link rear suspension consist largely of aluminum to reduce unsprung weight. 16-inch brakes with excellent cooling behavior provide for rapid deceleration. It should come as no surprise that the Audi A4 allroad quattro offers sportiness, comfort, and stability - onroad and offroad. After all, it is an A4.

On rough terrain, the Audi A4 allroad quattro relies on a high-tech feature of its Electronic Stabilization Program (ESP): the Offroad Detection (ORD) technology automatically identifies the type of driving surface and adjusts the ESP's control parameters accordingly. When the driver depresses the gas pedal, ESP increases propulsive power by tolerating more wheel spin than otherwise. If necessary, it will override for a time in the interests of safety.

On paved roads, Audi drive select further enhances the joys of driving. This control system automatically and perfectly adapts the personality of the Audi A4 allroad quattro to the driver's preferences. Audi drive select namely evaluates the engine's throttle response, the Servotronic power steering, and S tronic's shift points in automatic mode. The driver can freely switch among three different engine maps: comfortable, standard, and sporty. And MMI navigation plus provides yet another on-board control option, and is individually programmable.

The Audi drive select can be paired with Audi dynamic steering. It consists of a superimposed gear system, and varies the steering ratio as well as steering assistance in a continuously variable manner. Audi drive select functions directly at low speeds and indirectly at high speeds. At the vehicle's cornering limit, the dynamic steering keeps the Audi A4 allroad quattro on course via split-second corrective actions - subsequently obviating extensive ESP intervention.

Audi A1 e-tron Concept, 2010

Audi A1 e-tron Concept, 2010

 
 

The new e-tron model series from Audi will gain another new member at the 2010 Geneva Motor Show: The Audi A1 e-tron Concept is a Mega City Vehicle (MCV) with an innovative drive technology. It comes equipped with a powerful electric motor for zero-emission driving in the city. There is also an internal combustion engine on board that recharges the battery in exceptional circumstances. The Audi A1 e-tron Concept is very agile thanks to the 75 kW (102 hp) peak power of its electric motor.

The technology of the Audi A1 e-tron
The e-tron model family from Audi is just a few months old, but it already has a number of members, for each of which Audi has chosen a different drive technology. The first e-tron, which debuted at the 2009 IAA in Frankfurt/Main, is a near-series high-performance sports car with electric motors for all four wheels. The study shown at the Detroit Motor Show in 2010 is a lightweight, compact two-seater with two electric motors on the rear axle.

The Audi A1 e-tron Concept now presents another approach - a compact electric car in the premium class. The four-passenger, two-door MCV city car was designed specifically for use in the metropolitan areas of Europe and North America and in the rapidly growing megacities of Asia and South America. The Audi A1 e-tron always drives on electric power; its internal combustion engine is only used to recharge the battery in isolated cases.

The integration of the new technologies shows the holistic approach that Audi is pursuing with electric mobility. The objective is to use the energy with the lowest possible losses. The precise interaction of the components, their intelligent packaging, and the efficient management of the current flows are the product of the expertise that the company has developed in this area.

Audi has developed a proprietary thermal management system to keep the battery, the electric motor, and the power electronics within their respective ideal temperature windows.

Behind the three e-tron models is a broadly diverse and modular technology platform that continues to grow very rapidly as Audi drives development forward.

The electric motor: 75 kW (102 hp) peak power
The synchronous electric motor of the Audi A1 e-tron is mounted transversely at the front of the car. Its low mounting position has a positive effect on the vehicle's center of gravity. Continuous output is rated at 45 kW (61 hp), with peak power of 75 kW (102 hp) available in short bursts. 150 Nm (110.63 lb-ft) of torque is continuously available, and peak torque is 240 Nm (177.01 lb-ft).

The electric motor sends its power to the front wheels via a single-speed transmission. The elegant, retractable selector lever on the console of the center tunnel used to choose between "Drive," "Reverse," and "Neutral" was taken from the first Audi e-tron.

The power electronics are mounted in the engine compartment above the electric motor. The most important components are the pulse-controlled inverter, which serves as the controller between the electric motor and the battery; the DC converter, which connects the high-voltage network with the 14 volt electrical system; a breaker unit to protect the high-voltage components; and the charging module. The socket for the standard charging plug is located behind the rings in the single-frame grille of the Audi A1 e-tron. A fully depleted battery can be recharged in approximately three hours from the 380 volt grid. A display immediately adjacent to the plug-in connection shows the current charge status and the charging time remaining.

The concept of the innovative Mega City Vehicle requires the electrification of key auxiliaries. The refrigerant compressor of the climate control system, for example, is electrically powered by a high-voltage electric motor that supplies only the amount of power needed at the time.

This increases system efficiency substantially compared to conventional concepts. Thanks to a special circuit, the climate control loop also functions as a heat pump that regulates the temperature of the cabin and the battery.

The power steering of the Audi A1 e-tron is electro-mechanical and thus particularly energy-efficient. An electronic brake system makes it possible to tap into the recuperation potential of the electric motors. A hydraulic fixed-caliper brake is mounted on the front axle, with two novel electrically-actuated floating-caliper brakes mounted on the rear axle. These floating calipers are actuated not by any mechanical or hydraulic transfer elements, but rather by wire ("brake by wire"). In addition, this eliminates frictional losses due to residual slip when the brakes are not being applied. In addition, the servo unit received a new, demand-controlled electric vacuum pump.

The large electric motor powering the Audi A1 e-tron Concept can convert braking energy into electric current and feed it back into the electrical system. The high degree of recuperation benefits overall efficiency. The electric control actions are imperceptible to the driver, who notices only the familiar, precise, and perfectly controllable pedal feel.

The battery pack: a compact T arranged below the floor
The energy storage unit is arranged below the floor, where it is ideal for the center of gravity and weight distribution. The battery pack is shaped like a T, with the short "transverse beam" filling the rear section of the center tunnel and the "cross-beam" filling that area in front of the rear axle where the fuel tank is otherwise located. The 380 volt lithium-ion rechargeable battery has a nominal energy content of 12 kilowatt hours. It comprises 96 prismatic cells and weighs less than 150 kilograms (330.69 lb).

The Audi A1 e-tron can drive 50 kilometers (31.07 miles) emission-free in city traffic on the powerful battery. On longer trips, the battery is recharged by a particularly compact internal combustion engine mounted below the luggage compartment.

The range extender
The Audi A1 e-tron Concept car has a Wankel engine as a range extender, but other compact concepts are also possible. The small single-rotor Wankel has a chamber volume of 254 cc and runs at a constant 5,000 rpm in its peak efficiency window. The electronics also consider navigation data such as the destination and route profile to automatically activate the range extender as needed. The driver can also turn the range extender on and off as necessary with the push of a button The fuel tank holds 12 liters (3.17 US gallons).

The great strengths of the Wankel engine are the nearly vibration-free and quiet operation, the small dimensions, and the extremely low weight. Together with the generator, which is powered by the Wankel engine and produces 15 kW of electric power, the complete assembly weighs only around 70 kilograms (154.32 lb). This weight also includes the special power electronics, the intake, exhaust, and cooling unit, plus the insulation and the subframe.

Driving experience
The first defining impression that the driver of the Audi A1 e-tron gets is that of nearly total silence. Even the Wankel engine in the back can barely be heard when it is running.

The second characteristic perception is the power of the electric motor, nearly all of which is available instantly and thrusts the Audi A1 e-tron forward with authority. The innovative Mega City Vehicle, which despite its complex drive technology weighs only 1,190 kilograms (2,623.50 lb) delivers zero-emission driving fun in a modern and sophisticated manner. The vehicle accelerates from 0 to 100 km/h (62.14 mph) in 10.2 seconds and has a top speed of more than 130 km/h (80.78 mph).

The Audi A1 e-tron can also cover longer distances if the range extender charges the battery. The extra range, which is intended primarily for interurban driving, is 200 kilometers (124.27 miles).

According to the draft standard, the two different operating modes yield a fuel consumption of only 1.9 l/100 km (123.80 US mpg), which corresponds to CO2 emissions of 45 g/km (72.42 g/mile). In electric mode, there are zero local CO2 emissions - the compact Audi A1 e-tron Concept is thus ecological and economical.

The third impression that the Audi A1 e-tron Concept makes is that of a larger car. The compact two-door boasts all of the strengths of the new A1 model series - the carefully tuned, sporty chassis with specially designed 18 inch alloy wheels and 215/35 R18 tires; the generous, "grown-up" interior; the excellent fit and finish; and a multitude of high-end equipment.

The dark shade "ebony" dominates the interior. The seats - with stone gray seams - and the headliner are in "Alabaster White".

Design
The concept car in Geneva has a special "Aqua Mint, pearl effect" paint finish; the contrasting roof arch is offset in "High Gloss Steel dark." As with the other two e-tron models, the 18-inch wheels with a 20-spoke turbine design convey the high-tech aspiration of the concept.

The rear diffuser with aluminum trim lacks tailpipes. This emphasizes the width of the vehicle and suggests the low emissions. The two front fenders are emblazoned with the "e-tron" logo.

The "Aqua Mint, pearl effect" exterior color carries over into the interior, where it adorns the door panels and the center console. The shift lever is a special leather-wrapped design; as is typical for the e-tron models, the start-stop button was placed in the front of the center console. A specially designed battery cover at the front of the car and the range extender engine with its cooling fins displayed under a sheet of glass in the luggage compartment also serve to visually underscore the clean technology of the Audi A1 e-tron Concept. And because an innovative drive concept also calls for innovative information management, the concept car features a freely programmable instrument cluster with a virtual display surface and innovative display and operating concept.

Audi e-tron Concept, 2009

Audi e-tron Concept, 2009

 
 

 Audi presents the highlight of the IAA 2009: the Audi e-tron Concept, a high-performance sports car with a purely electric drive system. Four motors - two each at the front and rear axles - drive the wheels, making the concept car a true quattro. Producing 230 kW (313 hp) and 4,500 Nm (3,319.03 lb-ft) of torque, the two-seater accelerates from 0 to 100 km/h (0 - 62.14 mph) in 4.8 seconds, and from 60 to 120 km/h (37.28 - 74.56 mph) in 4.1 seconds. The lithium-ion battery provides a truly useable energy content of 42.4 kilowatt hours to enable a range of approximately 248 kilometers.

The performance figures are by no means the only evidence of the consistent and holistic strategy. The design makes it clear that the Audi e-tron Concept belongs in the major leagues of sports cars, and the package takes into account the specific realities of an electric vehicle. The battery is directly behind the passenger cabin for an optimal center of gravity and axle load distribution.

The Audi e-tron Concept is able to freely distribute the powerful torque of its four electric motors to the wheels as required. This so-called torque vectoring allows for dazzling dynamics and an undreamed-of level of agility and precision when cornering.

Audi has taken a new and in some cases revolutionary approach to many of the technical modules. A heat pump is used to efficiently warm up and heat the interior. The drive system, the power electronics and the battery are controlled by an innovative thermal management system that is a crucial component for achieving the car's range without compromising its high level of interior comfort. Networking the vehicle electronics with the surroundings, which is referred to as car-to-x communication, opens new dimensions for the optimization of efficiency, safety and convenience.

The Concept
Electric drive systems are still very much outsiders. The first vehicles of this type took to the roads around 1900, yet in 2009 no volume car manufacturer has a car powered exclusively by batteries in its lineup. Fewer than 1,500 electric vehicles are currently registered in Germany, corresponding to only 0.035 percent of all registered vehicles.

Yet electric driving potentially offers numerous advantages. Electric cars reduce the dependence of transportation and the economy on the raw material petroleum. They produce no direct exhaust emissions and thus ease the local burden on the environment. Electric drive systems are also significantly more efficient than combustion engines, consequently making them easier on the customers' wallets. Other strengths include sportiness and the fun they bring to driving. All of the torque is essentially available the moment the driver steps on the accelerator, allowing for breathtaking acceleration.

There is still a lot of work to do before electric cars are ready for volume production, however. The greatest challenge is the integration of the energy storage system. Acceptable range and performance requires a traction battery that is heavy and takes up a lot of space. Audi is taking a new approach to offset these disadvantages - a holistic approach with a specific vehicle package, a systematic lightweight construction concept and an optimal configuration of all components for the electric drive.

Audi e-tron Concept - The Holistic Approach
The most important development related to batteries for electric drives are lithium-ion cells. Numerous experts throughout the world are working on their further development for use in cars, with the primary objectives being to reduce weight and increase capacity and performance. Audi has also opted for this technology, both for use in a hybrid production vehicle, such as the upcoming Q5 hybrid, and in the e-tron test platform.

The requirement specification for the concept vehicle goes far beyond battery technology and the replacement of the combustion engine with an electric drive system, however. The Audi development engineers decided back in the concept phase to design practically every component and technology based on the new requirements of electric mobility. The interaction of all elements has a decisive influence on the factors efficiency, range and practicality.

The Audi team therefore focused its attention on the total vehicle, which is reflected in the comprehensive requirement specification.
    * The reduction of road resistances and the resulting increase in range plays a major role with electric vehicles. Lightweight construction was therefore a top priority for the Audi e-tron Concept car. The body, in particular, combines low weight with supreme strength and rigidity. An intelligent aerodynamics concept with active elements helps to reduce consumption.
    * The package ensures the safe integration of the electric drive system and the battery. Placing the battery in front of the rear axle ensures an optimal axle load distribution without compromising the compact overall design and the generous amount of interior space.
    * Advanced battery technology enables a practical range. The battery system is water-cooled for optimal performance and service life.
    * A needs-based energy management system controls all functions for the chassis, convenience equipment and other auxiliary consumers.
    * The innovative thermal management system with optimally matched cooling and heating components considers the cooling requirements of the battery and the drive system in addition to the interior temperature.
    * Driving dynamics and road comfort are what Audi customers have come to expect in the sports car segment.
    * Vehicle safety is on par with the best of today's production vehicles.
    * The driver is provided with clear and comprehensive information.
    * The Audi e-tron Concept car uses car-to-x communication technology developed by Audi to improve the efficiency of conventionally powered vehicles. For example, information about traffic light cycle times and the flow of traffic - provided by the infrastructure and other vehicles - is used to compute an optimal driving strategy. Audi has already modeled such a solution in Ingolstadt as part of its "travolution" project.

Design and Package
The caliber of the car is apparent to the observer at first glance. The Audi e-tron Concept has a wide, powerful stance on the road. The car body seems almost monolithic; the closed rear end appears powerful and muscular. The trapeze of the single-frame grille dominates the front end and is flanked by two large air intakes. The top of the grille merges into the flat strips of the adaptive matrix beam headlamp modules with their clear glass covers. High-efficiency LED technology is used for all lighting units - a matter of honor for Audi as the worldwide pioneer in this field.

The headlamps are the core of a fully automatic light assistance system that reacts flexibly to any situation. The new technology recognizes weather conditions and adapts the illumination to rain or fog. The technology at the heart of the light assistance system is a camera that works together with a fast computer to detect oncoming traffic, recognize lanes and measure visibilities, such as in the event of fog.

If there is oncoming traffic, for example, the high beams are turned off in the corresponding section of the illumination field. The cornering light system analyzes data from the navigation system and illuminates corners before the driver steers into them. The Audi e-tron Concept does not have conventional fog lamps that consume additional power. It instead intelligently varies the low beams to widen the illumination field, thus significantly reducing the glare from the car's own lights.

The variability of the headlamps is also reflected in their design. The LED elements change appearance and thus the character of the front end of the vehicle depending on the speed driven and the ambient conditions. The innovative lighting technology offers the Audi designers almost as much design freedom as the shape of the body does.

A new design element unique to the Audi e-tron Concept are the air intakes in the single-frame grille and in front of the rear wheel wells. They are closed flush under normal circumstances and opened by means of flaps when additional cooling air is required. Maximum efficiency is also the reason behind this measure. The concept car has a remarkably low drag coefficient, which gets even better when the flaps are closed.

The vehicle body is compact. The sweeping line of the front end and the flat curved roof immediately identify the two-seater as an Audi. The contours of the flanks are familiar. The tapering of the dynamic line above the sill and the shoulder line tie together the front end, the side and the rear, lend a plastic quality to the doors and the transition to the side air intake and sharply emphasize the Audi-typical round wheel wells with the large, 19-inch tires.

1.90 meters (74.80 in) wide, just 4.26 meters (167.72 in) long and 1.23 meters (48.43 in) tall - those are the proportions of a supercar. The wheelbase of 2.60 meters (102.36 in) leaves plenty of room between the axles for people and technology. Like with a mid-engined sports car, the cabin of the Audi e-tron Concept is shifted far forward toward the front axle, leaving room in front of the rear axle for the roughly 470 kilogram (1036.17 lb) battery unit, the inverter and the power electronics.

The two electric motors, which have their own cooling system, are mounted behind the rear axle. The front electric motors are mounted on the front axle, with their cooling system arranged in front of them. This special package, which features a 42:58 weight distribution, ensures perfect balance, which contributes to the driving dynamics of the Audi e-tron Concept.

Systematic lightweight construction is an even more important prerequisite for efficiency and range with electric vehicles than for conventionally powered automobiles. The Audi development engineers drew on the core competence of the company for the Audi e-tron Concept. The body structure is based on Audi Space Frame (ASF) technology and was realized as a hybrid construction. All add-on parts - doors, covers, sidewalls and roof - are made of a fiber-reinforced plastic.

The combination of aluminum and carbon fiber-reinforced composite material guarantees supreme rigidity coupled with low weight. Audi will soon use this technology in a similar form for production vehicles. Despite the complex drive system layout with four electric motors and a high-capacity battery system, the total weight of the Audi e-tron Concept is only around 1,600 kilograms (3527.40 lb).

Interior and Control Concept
Optical and functional references to the new drive concept characterize the interior design. They establish an advanced connection between proven Audi genes and new formal hallmarks. Typical for the Audi design language is the reduction of the architecture, controls and flow of information to the essential in favor of visible lightweight construction and a tidy overall impression.

The dash appears to float and has a curve that extends laterally into the door panels. With no need to allow for a transmission, shifter and cardan tunnel, the designers took advantage of the opportunity to create a particularly slim and lightweight center tunnel and center console. The flush gear selector, with which the driver chooses between the modes forward, reverse and neutral, emerges from the tunnel when the vehicle is started.

The cockpit of the Audi e-tron Concept is also oriented toward the driver - a further characteristic Audi trait. Instead of the classic instrument cluster, the concept car is the first Audi to be equipped with a large, fold-out central display with integrated MMI functions. It is flanked by two round dials.

The MMI is controlled via a scroll pad with a touch-sensitive surface on the steering wheel ("MMI touch") - an element inspired by modern smartphones.

While an analog speedometer on the right provides speed information, the instrument on the left tells the driver how much power is being drawn. The central display shows the range in the status bar and presents all key information from the infotainment and navigation systems. It also provides the driver with relevant data from the vehicle's communication with its surroundings. The instruments combine the analog and the digital worlds into a single unit.

Characteristic for the concept of the Audi e-tron Concept is the near total elimination of switches and small components such as the ignition. The climate control unit is located to the right above the steering wheel. The display provides temperature and ventilation information. Again drawing inspiration from a smartphone, the system is controlled by means of a touch-sensitive sliding control.

The racing-inspired lightweight bucket seats combine excellent lateral support with comfort. To contrasting colors - snow white and cognac - delineate the various zones of the interior. The colors and the high-quality materials combine elegance and sportiness.

Drive System and Energy Supply
Four asynchronous motors with a total output of 230 kilowatts (313 hp) give the Audi e-tron Concept the performance of a high-output sports car. The concept car can accelerate from 0 to 100 km/h (0 - 62.14 mph) in 4.8 seconds if necessary, and goes from 60 to 120 km/h (37.28 - 74.56 mph) in 4.1 seconds. The torque flows selectively to the wheels based on the driving situation and the condition of the road surface, resulting in outstanding traction and handling.

The top speed is limited to 200 km/h (124.27 mph), as the amount of energy required by the electric motors increases disproportionately to speed. The range in the NECD combined cycle is approximately 248 kilometers (154 miles). This good value is made possible by the integrated concept: technology specially configured for the electric drive system combined with state-of-the-art battery technology. The battery block has a total energy content of roughly 53 kilowatt hours, with the usable portion thereof restricted to 42.4 kWh in the interest of service life. Audi uses liquid cooling for the batteries.

The energy storage unit is charged with household current (230 volts, 16 amperes) via a cable and a plug. The socket is behind a cover at the back of the car. With the battery fully discharged, the charging time is between 6 and 8 hours. A high voltage (400 volts, 63 amperes) reduces this to just around 2.5 hours. The Audi engineers are working on a wireless solution to make charging more convenient. The inductive charging station, which can be placed in the garage at home or also in special parking garages, is activated automatically when the vehicle is docked. Such technology is already used today in a similar form to charge electric toothbrushes.

The battery is charged not only when the car is stationary, but also when it is in motion. The keyword here is recuperation. This form of energy recovery and return to the battery is already available today in a number of Audi production models. During braking, the alternator converts the kinetic energy into electrical energy, which it then feeds into the onboard electrical system.

The Audi e-tron Concept, which is slowed by four lightweight ceramic brake discs, takes the next large step into the future. An electronic brake system makes it possible to tap into the recuperation potential of the electric motors. A hydraulic fixed-caliper brake is mounted on the front axle, with two novel electrically-actuated floating-caliper brakes mounted on the rear axle. These floating calipers are actuated not by any mechanical or hydraulic transfer elements, but rather by wire ("brake by wire"). In addition, this eliminates frictional losses due to residual slip when the brakes are not being applied.

This decoupling of the brake pedal enables the Audi e-tron Concept's electric motors to convert all of the braking energy into electricity and recover it. The electromechanical brake system is only activated if greater deceleration is required. These control actions are unnoticeable to the driver, who feels only a predictable and constant pedal feel as with a hydraulic brake system.

Making its Automotive Debut: The Heat Pump
The heat pump - used here for the first time ever in an automobile - also serves to increase efficiency and range. Unlike a combustion engine, the electric drive system may not produce enough waste heat under all operating conditions to effectively heat the interior. Other electric vehicles are equipped with electric supplemental heaters, which consume a relatively large amount of energy. The heat pump used by Audi - and commonly used in buildings - is a highly efficient machine that uses mechanical work to provide heat with a minimum input of energy.

A high-efficiency climate control system is used to cool the interior. It works together with the thermal management system to also control the temperature of the high-voltage battery. The battery, the power electronics and the electric motors must be kept at their respective ideal operating temperatures to achieve optimal performance and range.
The drive system is heated if temperatures are cool, and cooled if hot. This preconditioning can also be extended to the interior, if necessary, so that the passengers can step into a cabin that has been heated or cooled as appropriate for their comfort.
 
Driving Dynamics
The normal distribution of the tractive power is clearly biased toward the rear axle in accordance with the weight distribution of the Audi e-tron Concept. Similarly to a mid-engined sports car, roughly 70 percent of the power goes the rear and 30 percent to the front. If an axle slips, this balance can be varied by means of the four centrally controlled electric motors. The electric vehicle from Audi thus enjoys all of the advantages of quattro technology.

The four individual motors, which in the interest of greater traction are installed behind the wheels as wheel drives, also enable the Audi e-tron Concept's lateral dynamics to be intelligently controlled. Similar to what the sport differential does in conventional quattro vehicles, torque vectoring - the targeted acceleration of individual wheels - makes the Audi e-tron Concept even more dynamic while simultaneously enhancing driving safety. Understeer and oversteer can be corrected by not only targeted activation of the brakes, but also by precise increases in power lasting just a few milliseconds. The concept car remains extremely neutral even under great lateral acceleration and hustles through corners as if on the proverbial rails.

The chassis has triangular double wishbones at the front axle and trapezoidal wishbones made of forged aluminum components at the rear axle - a geometry that has proven in motorsports to be the optimal prerequisite for high agility, uncompromising precision and precisely defined self-steering behavior. A taut setup was chosen for the springs and shock absorbers, but it is still very comfortable.

The direct rack-and-pinion steering gives finely differentiated feedback. Its electromechanical steering boost varies with speed, so that the Audi e-tron Concept only has to provide energy while steering, and not while driving straight ahead.

Car-to-x Communication
The electronics development engineers at Audi not only aimed to make the Audi e-tron Concept as efficient and fun to drive as possible, they were also very concerned with safety and traffic management. The technical concept car includes a prototype of an information processing system. Future generations of these systems will usher in a new era in the networking of road traffic, particularly in regions and countries with a high volume of traffic. This progress is made possible by the rapid advancements in computing power, software and communication technology.

The buzzword "car-to-x communication" refers to the direct exchange of information in flowing traffic and to the traffic environment. The letter "x" is a free variable that can refer just as easily to other vehicles as to fixed infrastructure such as traffic lights. In contrast to today's telematic systems, car-to-x communication no longer requires a central service provider to quickly and effectively pool and process information. The participants themselves perform these tasks by spontaneously networking with one another.

The future car-to-x network still needs some time before it becomes reality on the roads. This obstacle is one that can be overcome, however, as nearly every carmaker in Europe, the U.S.A. and Japan has decided to develop a common standard for hardware and software. Once all new cars are equipped with this technology, a functional network of automotive transmitters will soon be available, at least in large population centers.