Skip to main content

Hitachi Group to develop basic technology for preventing collisions

Japan-based Hitachi, Hitachi Automotive Systems and Clarion have developed the basic technology for preventing collisions while maintaining safe and practical speeds by predicting changes in pedestrian movements and rapidly calculating optimum speed patterns in real time. The companies claim to have verified the validity of the technology using experimental vehicles and determined that it can be implemented at safe and practical driving speeds. Going forward, the Hitachi Group will accelerate to further
October 16, 2015 Read time: 2 mins
Japan-based 2213 Hitachi, Hitachi Automotive Systems and Clarion have developed the basic technology for preventing collisions while maintaining safe and practical speeds by predicting changes in pedestrian movements and rapidly calculating optimum speed patterns in real time.

The companies claim to have verified the validity of the technology using experimental vehicles and determined that it can be implemented at safe and practical driving speeds. Going forward, the Hitachi Group will accelerate to further develop the technology through repeated trials and contribute to the commercialisation of autonomous driving technology.

The Hitachi Group has been conducting leading research on technologies that contribute to commercialisation of autonomous driving on local roads, in addition to autonomous driving in parking areas and expressways.

It has developed the basic technology to address the problems faced by autonomous vehicles, such as recognising obstacles and moving objects such as passing vehicles and pedestrians, humans and predicting changes in their movements, etc. and verified its validity using experimental vehicles.

Key features of the technology include speed control based on prediction of change in movement and high-speed calculation of optimum speed

Tests using experimental vehicles were conducted to verify the validity of the new technology. Results showed that it was possible to achieve practical speeds for passing through pedestrians and driving within the standard comfortable speeds for acceleration (2.2 m/s2 or less) and for change of acceleration (2.0 m/s3 or less).

Going forward, the Hitachi Group will conduct further tests using experimental vehicles in different driving environments, including at Mcity which opened at the University of Michigan in July 2015 as a controlled environment for conducting tests on autonomous vehicles and connected cars.

For more information on companies in this article

Related Content

  • Hitachi Rail Europe wins UK first traffic management contract
    July 28, 2015
    Passengers on some of the busiest commuter lines in the UK can look forward to more frequent and more reliable trains following a deal to provide new traffic management technology on the Thameslink route through central London. Network Rail and the Thameslink Programme have signed a contract with Hitachi Rail Europe (HRE) to deliver a step-change in technology through state-of-the-art traffic management technology.
  • Verizon and Honda work on 5G at Mcity
    April 14, 2021
    Companies team up with University of Michigan on mobile edge computing and 5G
  • Volvo and KPMG find buses are key to urban air quality
    September 13, 2016
    Buses can play a key role in the battle to improve air quality in towns and cities as David Crawford discovers. A city with a population of half a million would gain about US$12.3 million in annualised societal savings if all its buses ran on electricity instead of diesel. This is the conclusion of a wide-ranging analysis carried out by Swedish bus manufacturer Volvo Group and global business consultants KPMG.
  • One eye on the future
    December 12, 2013
    Mobileye’s Itay Gat discusses the evolution of monocular solutions for assisted and autonomous driving with Jason Barnes. Founded in 1999, Israeli company Mobileye manufactures and supplies advanced driver assistance systems (ADAS) based on its EyeQ family of systems-on-chips for image processing for solutions such as lane sensing, traffic sign recognition, vehicle and pedestrian detection. Its products are used by both the OEM and aftermarket sectors. The company’s visual interpretation algorithms drive