University of Michigan connects 3,000 cars for year-long safety pilot

University of Michigan connects 3,000 cars for yearlong safety pilot

Road safety continues to be a major concern for both researchers and car makers alike. Yesterday saw yet another real-world trial kicking off, this time on a much grander scale. A total of 3,000 vehicles in Ann Arbor, Michigan are taking part in a 12-month project run by the state's Transportation Research Institute. The vehicles have Dedicated Short Range Communications and video recording facilities, which means the cars can communicate with each other, traffic signals, and share data to a central platform -- which in turn issues warnings when high risk situations, or if traffic problems occur. Of course, this trial will also create a massive data set, which researchers will be able to plunder, and help the National Highway Traffic Safety Administration (NHTSA) better determine the viability of such systems. So while it's unlikely to lead to self driving cars just yet, it's a step in the right direction.

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University of Michigan connects 3,000 cars for year-long safety pilot originally appeared on Engadget on Wed, 22 Aug 2012 23:32:00 EDT. Please see our terms for use of feeds.

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GM testing pedestrian detection system powered by WiFi Direct (video)

GM testing pedestrian detection system powered by WiFi Direct

Car makers have been peddling wireless pedestrian avoidance systems almost as long as there have been automobiles. (We believe one of the earliest was called the "side view mirror.") GM's new experiment though, differs from other implementations by skipping out on the 3G, cameras and radar -- instead going for a model built around WiFi Direct. The peer-to-peer 802.11 standard hasn't exactly set the world on fire, but the WiFi Alliance is diligently tweaking the platform and apparently GM thinks its a perfect match for connecting cars, cyclists and pedestrians to each other. Unlike 3G-based systems, there's little lag between locating and identifying bikes or people crossing the street since the signal doesn't have to be bounced off a satellite. It also has a leg up on radar detection since WiFi can be a two way pipeline -- alerting someone out for a stroll of an oncoming vehicle. Of course, it will be some time before anything like this actually makes it into a production vehicle. But, in the meantime, you can check out the PR and video after the break.

Continue reading GM testing pedestrian detection system powered by WiFi Direct (video)

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GM testing pedestrian detection system powered by WiFi Direct (video) originally appeared on Engadget on Fri, 27 Jul 2012 15:54:00 EDT. Please see our terms for use of feeds.

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Panasonic details radar-based technology that can detect collisions in low light

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Collision detection for cars? Yeah, scientists are on that. But whenever we read about concepts like this, the accompanying literature is often curiously light on details pertaining to real-life driving conditions; it's often unclear how well the tech will fare if you dredge it up on a foggy day, or in the middle of torrential storm. But in that press release you see down there, low visibility and poorly lit roads are all Panasonic wants to talk about. The company just unveiled its new crash-avoidance system, which, like other concepts we've seen, uses millimeter-wave radar technology to detect pedestrians and bicyclists. Since humans tend to reflect weaker radar signals than cars, Panasonic has designed a new pulse radar code sequence that allows pedestrians to leave a bigger footprint. It's so effective, the company claims, that it can detect bystanders up to 40 meters (131 feet) away, and will work at night and through rain, fog, snow and blinding sunlight. That all sounds promising, of course, but as with other concepts, it's not clear, when, exactly we'll see this system put to good use in the real world.

Continue reading Panasonic details radar-based technology that can detect collisions in low light

Panasonic details radar-based technology that can detect collisions in low light originally appeared on Engadget on Fri, 27 Apr 2012 18:05:00 EDT. Please see our terms for use of feeds.

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