Skip to main content

Kyocera participates in self-driving bus test in Japan

Kyocera has installed roadside units to enable Vehicle to Infrastructure (V2I) communications for a self-driving bus test in Japan. The Mobility Innovation Consortium, a group led by East Japan Railway (JR East), is organising the three-month trial to evaluate self-driving technology for bus transit applications. Advanced Smart Mobility will provide the bus, which will operate on JR East’s bus rapid transit (BRT) lines in Rikuzentakata City, Iwate Prefecture. High-sensitivity magnetic impedance
December 21, 2018 Read time: 2 mins

897 Kyocera has installed roadside units to enable Vehicle to Infrastructure (V2I) communications for a self-driving bus test in Japan.

The Mobility Innovation Consortium, a group led by East Japan Railway (JR East), is organising the three-month trial to evaluate self-driving technology for bus transit applications.

Advanced Smart Mobility will provide the bus, which will operate on JR East’s bus rapid transit (BRT) lines in Rikuzentakata City, Iwate Prefecture.

High-sensitivity magnetic impedance (MI) sensors from magnetic markers placed on the BRT routes will identify the position of the bus. Tests will be carried out to assess the operation of the bus autonomous lane-maintenance and speed control systems. The vehicle will operate at speeds of 40kmh or lower while stopping at designated positions.

Precision docking tests will utilise magnetic markers which communicate spatial information to stop the bus automatically as it reaches the platform of the BRT station.

A third test will use radio communication between the bus and location-detection systems to verify the ability of a bus to negotiate passage on a BRT roadway wide enough for one vehicle, as another vehicle approaches from the opposite direction.  

Additionally, location-detection tests will use GPS to verify navigation and distance-measurement systems.

Aichi Steel will supply magnetic markers and Softbank is responsible for multi-global navigation satellite system terminals. Nippon Signal is providing the signal light and signal control equipment while NEC is handling the target track creation and control of the magnetic marker system.

NEC converts information about the road design map, such as curves, lines, and slopes, into electronic data to create the target path. “The information from the magnetic markers and RFID tags is then read by the bus so that it can identify its position,” the company says. “This system supports smooth driving along the target path.”

For more information on companies in this article

Related Content

  • Bosch launches automated driving initiative in China
    April 19, 2017
    German automotive supplier Robert Bosch is to collaborate with Chinese internet group Baidu and map providers AutoNavi and NavInfo, in a deal that will use data collected by Bosch’s radar and video sensors in vehicles to generate and update high precision maps for automated driving. In addition, Bosch and Baidu have set up a test vehicle for partially automated driving on Chinese motorways. The vehicle, based on a Jeep Cherokee, is equipped with Bosch components, including five mid-section radar sensors and
  • Lacroix launches new range of multi-colour LED VMS
    February 26, 2014
    Lacroix Trafic will use Intertraffic Amsterdam 2014 to present a wide range of ITS products such as traffic lights, traffic controllers, and data-collection stations, variable speed limit signs, directional lane signs as well as to unveil a new range of multicolour LED full matrix variable messages signs (VMS). Using the latest CMS diode technology means these multi-coloured messages can be viewed at distances of up to 300 metres. The signs are easy to configure, with tool-free maintenance, and of course
  • Hard shoulder running aids uniform traffic flow and safer driving
    January 23, 2012
    David Crawford detects a market for European experience. Well-established now in at least three European countries, Hard Shoulder Running (HSR) on motorways is exciting growing interest in the US. A November 2010 Report to Congress by the Federal Highway Administration (FHWA), on the Efficient Use of Highway Capacity, notes the role of HSR in the European-style Active Traffic Management (ATM) strategies now being recommended for implementation in the US where, until recently, they were virtually unknown.
  • Machine vision’s image of road management’s future
    June 11, 2015
    Q-Free’s Marco Sinnema looks at how the commoditisation of high-quality vision-based solutions is widening their application. Machine vision technology’s entry into the ITS/traffic management sector has followed a classic top-down path. This is unsurprising given the extremely demanding performance criteria which are the standard in its market of origin, manufacturing processing. Very high image qualities combined with frame rates often in the hundreds per second range resulted in vision systems with capabi