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2018 Audi SQ5 will use 48-volt electric supercharger
Tue, Jun 14 2016It seems like 48-volt electric systems and electric compressors are becoming relatively mainstream, and Audi will be adding another vehicle powered by this emerging technology in 2017, according to comments Audi powertrain chief Oliver Hoffman made to Autocar. Hoffman said the upcoming SQ5, probably a 2018-model-year vehicle, will use a version of the electric compressor technology that debuted on the SQ7. While the SQ7 uses two gas-driven turbochargers and one electric compressor, the SQ5 will likely only use one conventional turbo and one e-compressor. That should allow it to make 365 hp, but 390 hp is possible from the system and may hint at room for a more powerful SQ5 Plus down the road. Remember, the European SQ5 uses a 3.0-liter TDI engine, and that's the same basic engine that will power the new SQ5 with the addition of the new forced induction system and 48-volt electrics. And also remember that the US-market SQ5 uses a supercharged 3.0-liter gasoline engine, not the TDI unit, which is one of the reasons it's still on sale in the wake of the TDI scandal. Torque is the real differentiator: the current US-market SQ5 makes 354 hp and 347 lb-ft of torque, while the current Euro-market SQ5 Plus makes a massive 516 lb-ft. No word yet on how the dual-compressor system on the upcoming SQ5 will affect torque numbers, but expect the new engine to again have considerably more twist than its gas-powered US-market counterpart. Related Video: News Source: Autocar Green Audi Technology Emerging Technologies Crossover SUV Diesel Vehicles Performance audi sq5 48-volt system
Here’s how 20 popular EVs fared in cold-weather testing in Norway
Sat, Mar 21 2020Electric vehicles are known to suffer diminished performance in cold weather, but some do a better job than others hanging onto their range capacity while cabin heaters and frigid outdoor temperatures sap power from their batteries. Recently, the Norwegian Automobile Federation put the 20 of the best-selling battery-electric vehicles in the country to the test, to see not only how winter weather affected their range but also their charging times. The major findings: On average, electric vehicles lost 18.5% of their official driving range as determined by the European WLTP cycle. Electric vehicles also charge more slowly in cold temperatures. And interestingly, the researchers learned that EVs don’t simply shut down when they lose power but instead deliver a series of warnings to the driver, with driving comfort and speed levels maintained until the very last few miles. Because itÂ’s Norway, the worldÂ’s top market for electric and plug-in hybrid vehicles by market share, the test included many EVs that arenÂ’t available here in the U.S. But there are many familiar faces, among them the Nissan Leaf, Tesla Models S, 3 and X, Hyundai Kona (known here as the Kona Electric) and Ioniq, and Audi E-Tron. In terms of range, the top-performing EV was the Hyundai Kona, which lost only 9% of its official range, which the WTLP rated at 449 kilometers, or 279 miles, compared to its EPA-rated range of 258 miles on a full charge. It delivered 405 km, just enough to nudge it ahead of the Tesla Model 3, which returned 404 km. Other top performers included the Audi E-Tron, in both its 50 Quattro (13% lower range) and higher-powered 55 Quattro (14% lower) guises; the Hyundai Ioniq (10% lower); and Volkswagen e-Golf (11% lower). At 610 km (379 miles) the Tesla Model S has the longest WLTP range of all models tested and went the furthest, but still lost 23% of its range, though it also encountered energy-sapping heavy snow at the end of its test, when many cars had dropped out. The Model 3 lost 28% of its range. The worst performer? That goes to the Opel Ampera-e, better known stateside as the Chevrolet Bolt. It traveled 297 km (about 184 miles) in the test, which was nearly 30% lower than its stated WLTP range. We should also note that Opel, now owned by Groupe PSA, is phasing the car out in Europe and that Chevy recently upgraded the Bolt here in the U.S.
2016 Technology of the Year Finalist: Audi Virtual Cockpit
Tue, Jan 5 2016The heart of most infotainment systems is a touchscreen in the center console. In many systems, some information can be sent to the gauge cluster in slightly redacted form – stripped-down navigation commands, basic audio info, that sort of thing. To get the full story, the driver has to take their eyes off the road and look to the middle of the dashboard. Audi's Virtual Cockpit, in essence, ditches the center screen and places all that information in the gauge cluster. The high-resolution TFT screen is just over a foot wide, and it has two main modes: Classic view, and Infotainment view. Classic looks like many other traditional TFT gauge clusters, with large traditional gauges and the ability to display a decent amount of information in the space in-between. Go into Infotainment view, and the gauges shrink and head to the lower corners, freeing up a much larger amount of real estate for, say, the nav system map. The gauges also get out of the way when utilizing the menu, entering a destination, or that sort of thing. The four main modes are standard stuff. Virtual Cockpit will show you navigation, media, phone, and trip computer information in large or small formats. You interact with Virtual Cockpit with a familiar MMI wheel-type controller in the center console, like in many other Audis, or with buttons and a scroll/push wheel on the left side of the steering wheel. Climate control functions are handed by physical controls cleverly integrated in the center three vents. It takes a lot of processing power to make all this work as well as it does, and that's handled by NVIDIA's Tegra 3 processor – a quad-core processor usually seen in tablets and smartphones. The system is quick and responsive, and we found the high-resolution screen to be impressively sharp. If there's a downside, it's that Virtual Cockpit doesn't leave an opportunity for a passenger to step in and, say, enter a destination or change the radio station without altering what's right in front of the driver. It could be inconvenient at best, distracting at worst, to have the nav system directions you're trying to follow suddenly be superseded by the audio menu. Adding a small secondary screen for the passenger could be one fix; a connected companion smartphone app another. In the meantime, it's an impressive implementation of a clever idea.