Skip to main content

Electric vehicle range extension innovation

The latest research into electric vehicles suggests that range extensions of 10% or even more can be achieved through the utilisation of smart traffic technologies. By combining information gleaned from real-time traffic information, road type and gradient and also vehicle payload, researchers at the University of California, Riverside believe they can optimise route and performance to extend the range of electric vehicles.
August 7, 2012 Read time: 3 mins
The latest research into electric vehicles suggests that range extensions of 10% or even more can be achieved through the utilisation of smart traffic technologies. By combining information gleaned from real-time traffic information, road type and gradient and also vehicle payload, researchers at the University of California, Riverside believe they can optimise route and performance to extend the range of electric vehicles. The team was given a grant by the California Energy Commission to work on an algorithm that could use information such as traffic data and payload to provide drivers with an optimised route requiring the lowest energy consumption. This research follows on from an earlier project that revealed navigation systems designed to provide energy efficient routes can reduce fuel consumption and greenhouse gas emissions for internal combustion engine powered vehicles by anything from 5-15%.

While many electric vehicles offer working ranges of around 160km according to their manufacturers, actual range can vary from 80-220km. This is due to a combination of factors including ambient temperature, traffic volumes and gradients encountered along the route. Batteries typically perform less efficiently at lower temperatures, with range being reduced in winter time for example, while using heating or air-conditioning systems will further reduce range. Electric vehicles do not waste power when sitting with motors in a traffic jam as the motors are at rest, unlike internal combustion engine-powered vehicles that will generally have the engine idling. In this respect, electric vehicles are typically less wasteful of energy in dense traffic situations than internal combustion engine-powered vehicles. But, in slow speed, stop-go congestion an electric vehicle is not operating at optimum speed and is therefore running less efficiently.

The recent explosion in the market for GPS navigation systems has developed technology aimed at reducing distance travelled, but these systems do not typically optimise routes in terms of road gradients and have to be programmed to avoid congested areas. Continuous driving at optimum speeds, typically 80km/h, allows for greater range. Roads with steeper gradients may use more energy than slightly longer routes avoiding climbs. And choosing routes through built-up areas with traffic lights and junctions will slow a vehicle down and make for more inefficient use of energy.

The research team is based at the Center for 4106 Environmental Research and Technology (CE-CERT), which is part of the Bourns College of Engineering. The project will gather energy consumption data from electric vehicles being operated in a range of on-road conditions, including different speeds, congestion levels, road types, and gradients, as well as with different payloads. The data will then be analysed to provide models that can determine energy consumption and provide the basis for an eco-routing algorithm. This will then be programmed into a specially-modified navigation system and allow initial testing of the concept in an electric vehicle.

For more information on companies in this article

Related Content

  • Shell’s John Read explains “adaptable bitumen” developments
    December 15, 2016
    Shell’s highly innovative bitumen and asphalt solutions are helping create future-ready urban road networks around the world to meet the needs of today and tomorrow. Shell’s general manager of bitumen technology, Professor John Read, takes a look at some of the company’s game-changing ideas. The next 30 or so years will see a significant transformation in the way we live. Whereas almost 75% of the world’s population lived in rural locations in 1950, around 75% will live in cities by 2050. The global popu
  • Bridge inspection: destructive versus non-destructive methods
    January 6, 2015
    Tens of thousands of bridges in the United States are in desperate need of repair. But where to begin analysing their deteriorating state? Roger Roberts* investigates tips and techniques for ensuring bridge safety The average age of America’s more than 600,000 crumbling bridges is 42 years – many are 60 to 80 years old. The situation is dire, with many described as functionally obsolete, according to the American Society of Civil Engineers’ latest edition of its Report Card for America’s Infrastructure.
  • Electric vehicle range record
    May 1, 2012
    Japanese firm TGMY has scored a notable performance record with one of its custom-made electric vehicles. The company tested one of its vehicles on a track, clocking up 587km on a single charge.
  • Colombia’s Toyo Tunnel project providing key link
    May 20, 2016
    Colombia’s Toyo Tunnel project will provide an important new link for the country, writes Mauro Nogarin. The new Toyo Tunnel project is of immense importance for Colombia, improving transportation and providing an important road link. The work is being carried out by the Antioquia to the Sea Consortium, which comprises of FCC Construction, Cass Builders and Company, Carlos Alberto Solarte and Estyma Studies and Handling. These firms are building the Toyo Tunnel project and the various access roads, with the