Skip to main content

Nagoya University to develop driverless cars

Nagoya University has opened a research centre, bringing together academia, industry and government, with the aim of developing automated driving technologies as one of its first key projects. At the Nagoya University National Innovation Complex, researchers from the university’s schools of engineering, medicine, environmental studies and information science will work closely with their counterparts from six private companies, including Toyota Motor Corporation, Panasonic and Fujitsu.
June 16, 2015 Read time: 2 mins

Nagoya University has opened a research centre, bringing together academia, industry and government, with the aim of developing automated driving technologies as one of its first key projects.

At the Nagoya University National Innovation Complex, researchers from the university’s schools of engineering, medicine, environmental studies and information science will work closely with their counterparts from six private companies, including Toyota Motor Corporation, Panasonic and Fujitsu.

The National Innovation Complex, constructed at a cost of US$32.4 million, is located in an eight-floor building on Nagoya University’s Chikusa Ward campus. It forms part of a project by the science and technology ministry to build regional research hubs around Japan.

A laboratory for development of automated vehicles is home to the world’s first driving simulator that incorporates five large high-resolution screens as well as five experimental automated driving vehicles.

The research team plans to conduct experiments of their auto-driving technologies on public roads to further develop the technologies for practical use in 10 years.

At the inauguration ceremony, the university's president, Seiichi Matsuo, said the research complex’s mission is to achieve technological innovations in close cooperation with local industries.

“Aichi Prefecture is a stronghold of automotive and other manufacturing industries with craftsmanship strongly rooted in the region’s traditions,” Matsuo said. “We want to develop innovative technologies, taking advantage of the strength of local industries.”

Related Content

  • Truck platooning trials take to the highways
    July 24, 2017
    There is rising enthusiasm in America and beyond for the concept of truck platooning with trials being planned in several US states, as David Crawford reports. Growing numbers of US states are considering or implementing plans for trials of electronically-linked truck platooning on public road networks. This is in response to the interest being shown by the US$70bn a year road freight industry, where fuel represents 41% of the operating costs making the prospect of improving fuel economy by trucks travellin
  • Necessity is the mother of invention
    April 6, 2016
    The Netherlands aims to lead Europe, and the world, in the area of cooperative ITS and smart mobility. That’s not an aspiration – it’s a necessity as Frans op de Beek, principal advisor for traffic management and ITS within the Rijkswaterstaat, the Ministry for Infrastructure and the Environment, explains.
  • Texas A&M offer free campus transport testing
    October 27, 2016
    Free evaluation and testing of transportation systems and products might seem too good to be true - but it isn’t. Colin Sowman reports. Texas A&M University is offering to host transport technology demonstrations and research projects free of charge at its Main and newly-renamed Rellis campuses. The initiative’s aim is to encourage those with technologies that could improve transportation to bring their products, systems and ideas to Texas A&M’s campus where they can be evaluated, tested and demonstrated.
  • Vehicle probe data aids emergency rescue vehicle routing
    June 20, 2012
    A new vehicle routeing initiative has arisen to help improve emergency response and relief following natural disasters in Japan. David Crawford reports Japan’s national ITS group ITS Japan and the country’s leading automotives have agreed on a new combined approach to the organisation of traffic management and emergency response in the wake of major natural disasters. A new, robust traffic information platform using probe data obtained from vehicles to support traffic flow will build on the shared experienc