Skip to main content

Wireless charging project could change perceptions of electric vehicles

A two-year pilot project has begun in London with taxi firm Addison Lee and electric vehicle (EV) manufacturer Renault, which uses the principle of magnetic induction to jump electricity from a base station direct to the vehicle’s battery to deliver wireless charging. The charging technology being used is called Halo and has been developed by mobile innovations company Qualcomm, the organisation responsible for processors powering the latest generation of smartphones and tablets. ‘EV drivers will opt for th
October 10, 2012 Read time: 3 mins
A two-year pilot project has begun in London with taxi firm 6687 Addison Lee and electric vehicle (EV) manufacturer 2453 Renault, which uses the principle of magnetic induction to jump electricity from a base station direct to the vehicle’s battery to deliver wireless charging.

The charging technology being used is called Halo and has been developed by mobile innovations company 213 Qualcomm, the organisation responsible for processors powering the latest generation of smartphones and tablets. ‘EV drivers will opt for the simplicity of wireless charging because there’s no fuss from dirty cables that are difficult to handle in the cold and wet,’ says a Qualcomm spokesman.

Halo consists of a black pad, about the size and thickness of a newspaper, positioned centrally in a parking bay and either laid flat on the tarmac or buried slightly beneath it. The electricity running through the pad creates a virtual bubble above it and as long as the receiver unit on the car is inside that perimeter, the battery will automatically power up.

As the car approaches a Halo-enabled parking bay, it establishes a Bluetooth connection with the control unit and an alignment display switches from red to green to; after a few seconds, the screen changes to confirm power is going into the battery.

The system is currently configured to accept a domestic power supply, so it takes eight hours to charge a vehicle, although the development of a more advanced unit could reduce that time to around 90 minutes.

Using a standard EV, the Delta E4, designed and built by 6688 Delta Motorsport, that has been modified to use the wireless system, impressive results have apparently been obtained: when the battery is fully charged, it has a 140 mile range, reaches 60mph in around 6.5 seconds and has a top speed in excess of 100mph.

The Delta E4’s interior has a centrally mounted touch-screen interface, slightly smaller than an iPad, which controls everything from the audio to the air conditioning and also oversees the charging procedure.

Renault, which is supplying cars for the trial, has invested hugely in electric vehicles and is aiming to be the first mass-market manufacturer to offer a completely zero-emission model range.  Jacques Hebrard, Renault’s advanced projects director, says, “Our participation complements our European research project to demonstrate wireless induction charging of electric vehicles in a public environment with a high level of performance and safety.”

Related Content

  • May 3, 2019
    Gearing up for the global electric vehicle revolution
    As transport, communications and energy networks become inextricably linked, policy makers are recognising the implications for our built environment – and the growing electric vehicle market will have a major impact on the world’s infrastructure, says Rolton Group’s Chris Evans
  • August 1, 2023
    Transportation’s electrifying future
    Climbing out of our silos will be vital to create the frameworks and networks needed to decarbonise transport, if we are serious about mitigating climate change, says Colin Sowman
  • December 7, 2016
    Contact lens technology could offer alternative to battery power storage
    Research by UK organisations the University of Surrey and Augmented Optics, in collaboration with the University of Bristol, has developed technology which could revolutionise the capabilities of appliances that have previously relied on battery power to work. It could also revolutionise electric cars, allowing the possibility for them to recharge as quickly a regular non-electric car refuels with petrol, instead of the current process which takes approximately 6-8 hours. They believe the development by
  • September 26, 2012
    Milton Keynes to trial wirelessly charged electric buses
    In an initiative to enable the quieter, cleaner future of public transport in Milton Keynes, UK, eight organisations led by a subsidiary of Mitsui Europe ("Mitsui") have agreed a five-year collaboration committing to the replacement of diesel buses with their all-electric counterparts on one of the main bus routes in the city by summer 2013. The trial, which could reduce bus running costs by between US$19,500 and US$23,000 per year, is a partnership between Mitsui subsidiary eFleet Integrated Service, Milto