Skip to main content

nuTonomy to test self-driving cars on public roads in Boston

US self-driving car startup nuTonomy is to begin testing its growing fleet of self-driving cars on specific public streets in a designated area of Boston. The company, which launched a self-driving car trial in Singapore in September, has been given permission to operate its vehicles in the city’s Raymond L. Flynn Marine Park. nuTonomy equips its vehicles with a software system which has been integrated with high-performance sensing and computing components, to enable safe operation without a driver.
November 22, 2016 Read time: 2 mins
US self-driving car startup nuTonomy is to begin testing its growing fleet of self-driving cars on specific public streets in a designated area of Boston. The company, which launched a self-driving car trial in Singapore in September, has been given permission to operate its vehicles in the city’s Raymond L. Flynn Marine Park.

nuTonomy equips its vehicles with a software system which has been integrated with high-performance sensing and computing components, to enable safe operation without a driver.

The company’s technology system out of research conducted in Massachusetts Institute of Technology labs run by nuTonomy co-founders Karl Iagnemma and Emilio Frazzoli.

During the Boston road tests, nuTonomy’s software system will learn local signage and road markings while gaining a deeper understanding of pedestrian, cyclist, and driver behaviour and interaction across a complex urban driving environment. nuTonomy plans to work with government officials to expand the testing area to other parts of the city in the near future.

The testing in Boston will enable nuTonomy to build on the knowledge it has gained from the public road tests and public trials it has been conducting in Singapore, where it plans to launch its self-driving mobility-on-demand service in 2018.

Related Content

  • AB Dynamics platform adds cyclists and pedestrians to ADAS and AV testing
    March 27, 2018
    UK-based AB Dynamics (ABD) has released its LaunchPad platform with the intention of offering choreographed control of all mobile features involved in advanced driver assistance systems (ADAS) and autonomous vehicle testing. The solution, according to Jeremy Ash, the company’s commercial manager, will help create complex scenarios that potentially involve multiple pedestrians, cyclists and cars that are all synchronised and coordinated with the test vehicle. LaunchPad’s power controller runs on the comp
  • Indian state launches new road accident data management system
    July 28, 2015
    The Indian state of Himachal Pradesh has officially launched its first road accident data management system (RADMS) for the management, analysis and evaluation of road traffic accident data. Designed and developed by TRL, the UK’s Transport Research Laboratory, the new system streamlines and centralises the management of accident data, making it easier to identify and introduce measures to reduce the volume and severity of accidents. Hosted at the Himachal Pradesh State Data Centre in Shimla, the RADMS,
  • Volocopter to build landing pad for air taxis to Singapore
    June 7, 2019
    Volocopter has partnered with Skyports to build a landing pad for air taxis on the run-up public flight trials in Singapore during the second half of 2019. Volocopter says its Volo-Ports are designed to provide passengers with a safe air taxi experience and allow industry regulators to interact with the infrastructure and provide feedback. The Volo-Ports are also expected to: • Enable real-life testing of the full customer journey to perfect the passenger experience. • Showcase planned customer service
  • Ohmio to produce self-driving vehicles in New Zealand
    September 12, 2017
    Ohmio Automotion has launched in New Zealand to begin production of self-driving vehicles in the country, using technology developed by Australian parent company HMI Technologies. The electric Ohmio Hop shuttles are self-driving, fully electric autonomous vehicles which Ohmio says can form a connected convoy, enabling them to be used as a scalable public transport solution. They have been designed to be a last mile solution, carrying people and their luggage short distances, providing the last mile conn