Nissan and NASA extend research into autonomous mobility services
Update to research agreement will help Nissan develop the technology for prototype transportation services
Today at CES 2018, Nissan North America, Inc., the U.S.-based subsidiary of Nissan Motor Co. Ltd., announced an agreement with NASA Ames Research Center in California’s Silicon Valley to collaborate on research and technology development for future autonomous mobility services, including a working demonstration in Silicon Valley. This update to the existing research collaboration between Nissan and NASA builds on previous success to define a new scope of activities into 2019.
Under the terms of the five-year research and development partnership, researchers from the Nissan Research Center in Silicon Valley and NASA Ames have been working together to advance autonomous vehicle systems. In January 2017, at CES in Las Vegas, Nissan introduced Nissan Seamless Autonomous Mobility (SAM), a new platform for managing fleets of autonomous vehicles, developed from NASA technology. This new phase in the joint collaboration will build on that success to further develop the technology and test the use of SAM for managing autonomous transportation services, ahead of public implementations.
“We built SAM from technology NASA developed for managing interplanetary rovers as they move around unpredictable landscapes,” said Maarten Sierhuis, director of the Nissan Research Center in Silicon Valley. “Our goal is to deploy SAM to help third-party organizations safely integrate a fleet of autonomous vehicles in unpredictable urban environments, for example ride-hailing services, public transportation or logistics and delivery services. The final stage of our existing research agreement with NASA will bring us closer to that goal and test SAM in a working demonstration on public streets.”
“One of NASA’s strategic goals is to transfer the technology developed to advance NASA mission and program objectives to broader commercial and social applications,” said Eugene Tu, Center Director, NASA Ames. “Using NASA’s work in robotics to accelerate the deployment of autonomous mobility services is a perfect example of how the considerable work required to advance space exploration can also pioneer advances here on Earth.”
The research collaboration with NASA is part of Nissan’s roadmap for the technology and business evolution of the automotive industry, called Nissan Intelligent Mobility. This roadmap consists of three workstreams of inter-related innovations in autonomous drive (Intelligent Drive), electrification (Intelligent Power) and infrastructure technologies (Intelligent Integration). SAM represents a major milestone in Nissan Intelligent Integration, providing the infrastructure to safely and seamlessly integrate autonomous mobility services into existing urban environments.
About Nissan Motor Co., Ltd.
Nissan is a global full-line vehicle manufacturer that sells more than 60 models under the Nissan, INFINITI and Datsun brands. In fiscal year 2016, the company sold 5.63 million vehicles globally, generating revenues of 11.72 trillion yen. In fiscal 2017, the company embarked on Nissan M.OV.E. to 2022, a six-year plan targeting a 30% increase in annualized revenues to 16.5 trillion yen by the end of fiscal 2022, along with a core operating profit margin of 8% and cumulative free cash flow of 2.5 trillion yen. As part of Nissan M.OV.E. to 2022, the company plans to extend its leadership in electric vehicles, symbolized by the world's best-selling all-electric vehicle in history, the Nissan LEAF. Nissan’s global headquarters in Yokohama, Japan, manages operations in six regions: Asia & Oceania; Africa, the Middle East & India; China; Europe; Latin America; and North America. Nissan has a global workforce of 247,500 and has been partnered with French manufacturer Renault since 1999. In 2016, Nissan acquired a 34% stake in Mitsubishi Motors. Renault-Nissan-Mitsubishi is today the world’s largest automotive partnership, with combined annual sales of more than 10 million vehicles a year.
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