Driverless Cars: Difference between revisions
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| colspan="3" style="background: #E32636; padding: 3px 5px; text-align:center;" |''' | | colspan="3" style="background: #E32636; padding: 3px 5px; text-align:center;" |'''Feb. 7, 2012 Update''' | ||
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| Driverless | |Driverless "pods" begin to operate at London's Heathrow airport. | ||
[http://www.youtube.com/watch?v=8NCnvBS2SME&feature=related '''Link: Video of ride.'''] | |||
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==Industry Commentary== | ==Industry Commentary== | ||
[[Image:Boyslifecars.jpg|thumb|200px|Boy’s Life Magazine – October 1990]] | [[Image:Boyslifecars.jpg|thumb|200px|Boy’s Life Magazine – October 1990]] | ||
*''We could deliver a car to your office [near Tower Bridge] that could drive to Bristol. The technology exists, the problem is liability if there is an accident.'' [http://www.timesonline.co.uk/tol/driving/news/article6792747.ece '''Times Online, Aug. 12, 2009'''] | |||
*VOLVO’S new XC60 sport-utility vehicle...[is] fitted with mechanisms to help avoid a crash in the first place, including an automated braking system. The Volvo system, called City Safety, operates at up to 30kph (19mph)...City Safety uses a laser sensor fitted behind the windscreen to scan the road ahead, calculating relative speeds and distances. It applies the brakes if a collision cannot be avoided. ([http://www.economist.com/science/displaystory.cfm?story_id=12758720 The Economist, '''Dec 11, 2008''']) | *VOLVO’S new XC60 sport-utility vehicle...[is] fitted with mechanisms to help avoid a crash in the first place, including an automated braking system. The Volvo system, called City Safety, operates at up to 30kph (19mph)...City Safety uses a laser sensor fitted behind the windscreen to scan the road ahead, calculating relative speeds and distances. It applies the brakes if a collision cannot be avoided. ([http://www.economist.com/science/displaystory.cfm?story_id=12758720 The Economist, '''Dec 11, 2008''']) | ||
*Bit by bit, the day is coming when it will be possible to jump into an empty car and say: “Home, James.” ([http://www.economist.com/science/displaystory.cfm?story_id=12758720 The Economist, '''Dec 11, 2008''']) | *Bit by bit, the day is coming when it will be possible to jump into an empty car and say: “Home, James.” ([http://www.economist.com/science/displaystory.cfm?story_id=12758720 The Economist, '''Dec 11, 2008''']) |
Revision as of 04:50, 8 February 2012
In June 1933, William Branham experienced a series of 7 prophetic visions. In the fourth vision, scientific acheivement produced a driverless vehicle, while cars continued to be shaped more and more like an egg. This vision is being fulfilled. With driver assist technologies being integrated into vehicles today, the promise of a fully autonomous individual vehicle on all or designated roadways is possible. The research for autonomous vehicles began in 1977 by the Tsukuba Mechanical Engineering Lab in Japan. The Bundeswehr Universität München in Europe experimented with video-driven cars in the 1980s, and the U.S. experimented with an automated highway system in the 1990s. Today, however, the most promise is in individually autonomous vehicles made possible by advances in computer technology. The next time you read an article about the future of the automobile, remember this prophecy. Retelling of the 1933 vision:<playmp3>Seventy Weeks of Daniel, August 6, 1961|Driverless Cars.mp3</playmp3>
Industry Commentary
Driverless VehiclesDARPA (Defence Advanced Research Projects Agency)On Sunday October 8, 2005 a modified Volkswagen Touareg named Stanley beat 23 other robotic cars and 150 miles of Nevada Desert to claim a $2 Million prize and the rights to be called the first autonomouns off-road vehicle. Stanley is guided by video, laser, radar and GPS signals, is run by seven on-board Intel Pentiums, and is able to tell the difference between a tumbleweed and a rock. Stanley was invented by a team at Stanford University. Visit the GrandChallenge website for more details. On Saturday November 3, 2007, the Tartan Racing Team (Carnegie Melon) bested Stanley Jr. and Virginia Tech in a 60 mile mock urban course. Not only did these vehicles have to complete the course, they also had to navigate traffic (each other and stunt drivers) and obey all of California's traffic laws. DARPA handed out prizes totaling $3,500,000.[1] [2] The U.S. military has a mandate from Congress to have 30% of all military vehicles unmanned by 2015. The DARPA Grand Challenge and Urban Challenge are part of the U.S. military strategy to achieve this goal. ParkshuttleDeveloped by Frog Navigation (2getthere) and built by Connexion (the Dutch Transit Authority), this bus runs driverless through onboard computers and sensors, together with guiding magnets embedded in the designated roadway. However, Phileas does occasionally need to be manually overridden by a driver. Phileas is already in operation in the Netherlands between the airport and an industrial park.
Egg Shaped Cars - Concept vehiclesNissan PivoOne of the stars of the 2005 Tokyo Auto Show, the Nissan Pivo concept is an electric car with drive-by-wire systems and a revolving egg-shaped cabin. See Nissan's Press Release for more information. Peugot MoovieThe Moovie concept vehicle is driven by two large wheels, the centre of which serves as doors for the vehicle. The Moovie is an electric car designed by Andre Costa in the third Peugot Design Contest, and developed as a prototype by Peugot.
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