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Hyundai takes fully autonomous fuel cell vehicles on 70 mph road trip
Mon, Feb 5 2018Hyundai has announced three test vehicles based on its upcoming NEXO fuel cell vehicles, fitted with Level 4 autonomous technology, have completed a trial journey of 118 miles from Seoul to Pyeongchang across the Korean peninsula completely autonomously. It's a world first for fuel cell powered vehicles to reach Level 4 autonomous driving, which translates as "mind off" driving with no driver input needed. One of the interesting things about the NEXO fleet's trial is that it was performed in regular traffic at public highways, at speeds up to nearly 70mph. Earlier autonomous car testing in Korea has been performed on selected sections of road and at lower speeds than the highest allowed Korean highway speed reached in this trial. Hyundai says the test drive included following the traffic's flow, completing lane changes, and even handling motorway toll booths — and that the only human intervention needed was pressing "Cruise" and "Set" buttons on the three cars' steering wheels, to put them in autonomous mode. The NEXO has been designed as a hydrogen fuel cell car from the ground up, instead of the earlier, ICE-based Tucson FCEV. Hyundai claims a target range of 500 miles (NEDC) for the NEXO, for a single, five-minute hydrogen charge, and a system efficiency of 60 percent. On the run to CES from L.A. last month, Hyundai declared a real-world range of 360 miles for the tested NEXO; the 120-kW motor takes the fuel cell crossover to 60 mph in 9.9 seconds. The vehicles used in the South Korean trial use a combination of radar, lidar and cameras to monitor their surroundings, and some of these systems are already used in production Hyundai vehicles. At CES, Hyundai announced its partnership with Aurora Innovation, which is a Silicon Valley startup set up by former Alphabet Inc and Tesla engineers; the autonomous NEXOs are likely to feature Aurora's input. Hyundai sees commercialization of Level 4 vehicles taking place in 2021, though only in what it calls "pilot smart cities," or locations tailored to be connected enough to make the implementation of autonomous tech easier. "Fully" autonomous driving would be at commercial level by 2030. As for the vehicle itself, it features virtual assistant technology that is complemented with noise canceling to further turn the NEXO into a cocoon-like pod; there's also "Home Connect" tech which enables the passengers to use smart home gadgets remotely during their commute. Related Video:
Jaguar I-Pace vs. Tesla Model 3 and other EVs: How they compare on paper
Thu, Mar 1 2018The 200-mile club of electric vehicles is really growing. The most recent member is the Jaguar I-Pace, the company's first pure EV. It promises luxury, performance, style, and most important, good range. Nearly as recent is the Hyundai Kona EV, and while it doesn't promise luxury or performance like the Jaguar (it's also smaller), it does pack impressive range. With the introduction of both of these electric cars, we thought we would see how they compare against each other, and the other two big names in high-capacity electric cars: the Chevy Bolt EV and the Tesla Model 3. This isn't intended to be a direct, apples-to-apples comparison, as the four are quite different. If anything, they break into two groups: bigger and more luxurious, and smaller and less expensive. Then again, the number of vehicles with this electric range is small and comparisons to EV's with less range wouldn't be too kind to the other guys. If you want to learn more about these EVs, and compare them with other cars, be sure to check out our Car Finder and comparison tools. Horsepower and torque There is one clear winner here, and that's the Jaguar I-Pace. It packs a whopping 394 horsepower and 512 pound-feet of torque. That comes through a pair of electric motors (one at the front, another at the rear) that provide the Jag with all-wheel drive, the only one of these vehicles to offer it (at the moment). Altogether, it allows the I-Pace to have the best 0-60 mph time of 4.5 seconds. At the other end of the spectrum is the Hyundai Kona EV. It's front-drive, like the Bolt EV, and has effectively the same amount of horsepower as the Chevy at 201 horsepower, but its 0-60-mph time is almost a second slower. And the low-range version of the Kona, excluded because it doesn't go more than 200 miles between charges, is slower still. The Tesla Model 3 is the only vehicle with rear-wheel drive, and with a 0-60 mph of 5.1 seconds for the Long Range model, it is still very quick. Range and energy use Frequently, the all-consuming question with electric cars is, "How far can I go on a charge?" And to go the farthest, you need the long-range Tesla Model 3. It can go 310 miles. It has the added advantage of being able to use the network of Tesla Supercharger stations, though they are pay-per-use with the Model 3. Even the lower capacity Model 3, with just 220 miles of range, can use these stations.
Hyundai spotted testing Prius-style hybrid
Tue, Jan 20 2015The Toyota Prius has become an automotive icon – maybe less so among actual automotive enthusiasts than with the public at large – to the extent that most anyone on the street would recognize its five-door hatchback form and immediately identify it as a hybrid. Little wonder that Honda tried to emulate it with the second-gen Insight, but while that didn't work out so well for Honda, it looks like Hyundai is preparing to go down the same road with a dedicated hybrid of its own. Our paparazzi on the ground in the Arctic Circle have spotted this protoytpe and tell us what we're looking at is a new Prius-fighter from the Korean automaker. Snapped up high on a transporter truck, you can see the orange high-voltage cables underneath and a label with the letters AE HEV – the latter standing, of course, for Hybrid Electric Vehicle. We wouldn't be surprised if the AE stood for Advanced Experimental or Alternative Energy or something of the sort. Tipped to be based on the same platform as the next-generation Elantra, the new Hyundai hybrid is said to pack a 1.6-liter inline-four working in parallel with an electric motor juiced by a lithium-ion battery pack. It's expected to begin production in the second half of 2016, with a plug-in and possibly other variants to follow a year to a year and a half after its initial launch.















