Skip to main content

Nissan and Enel launch vehicle-to-grid project in the UK

Automotive manufacturer Nissan and multinational power company Enel are to launch a major vehicle-to-grid (V2G) trial in the UK, which will see one hundred V2G units installed and connected at locations agreed by private and fleet owners of the Nissan LEAF and e-NV200 electric van. By giving Nissan electric vehicle owners the ability to plug their vehicles into the V2G system, owners will have the flexibility and power to sell stored energy from their vehicle battery back to the National Grid. The annou
May 12, 2016 Read time: 3 mins
Automotive manufacturer 838 Nissan and multinational power company Enel are to launch a major vehicle-to-grid (V2G) trial in the UK, which will see one hundred V2G units installed and connected at locations agreed by private and fleet owners of the Nissan LEAF and e-NV200 electric van. By giving Nissan electric vehicle owners the ability to plug their vehicles into the V2G system, owners will have the flexibility and power to sell stored energy from their vehicle battery back to the National Grid.
 
The announcement heralds an exciting era for energy management in the UK, as not only will Nissan electric vehicle owners be able to play an active role in grid stability, providing an alternate source of income, but it will revolutionise how energy is supplied to the grid. Once scaled up, the V2G technology will allow owners of Nissan EV in the UK to become fully fledged and active participants in the UK energy market.

The project is part of Enel and Nissan’s commitment to support the entire EV network, going beyond the car itself and delivering new services to the energy industry.  In addition, there will be an increasing number of EVs on the roads across Europe in the future and the two companies believe it is important that V2G technology is rolled out to ensure the grid can satisfy the demands made upon it for increased energy.

Currently, says Nissan, if all 18,000 Nissan electric vehicles in the UK were connected to the energy network, they would generate the equivalent output of a 180 MW power plant. If that was scaled up in a future where all the vehicles on UK roads are electric, vehicle-to-grid technology could generate a virtual power plant of up to 370 GW, enough to power the UK, Germany and France.

“Today’s landmark trial in the UK is a significant step forward in renewable energy management, helping shape the future of  industries, cities and societies’” said Paul Willcox, chairman of Nissan Europe. “Smart energy management is one of the biggest challenges any nation faces for the future which is why this trial is so critical in assessing the feasibility of using variable, more flexible energy sources. We see Nissan electric vehicles as being the mobile energy hubs of the future, pioneering a self-sustaining energy infrastructure that will help solve the capacity issues of the future.

“This is the first time this has ever been done in the UK and by enabling customers to sell energy back to the grid; we’re providing a financial incentive to choose the sustainable option.”
 
Steven Holliday, non-executive director, National Grid, commented: “At National Grid we are constantly looking to the future to ensure we have the capacity to meet national energy demand - it’s our job to future proof the national transmission network.
 
“The rapid uptake of Electric Vehicles is certainly positive yet could also be challenging if we don’t plan ahead to understand precisely what effect this new technology will have on the electricity system. Our Future Energy team predicts that there could be up to 700,000 electric vehicles in 2020 requiring an extra 500MW of energy. That’s why we support innovative technologies and pioneering projects such as this one that have the potential to make a real difference to the way we manage energy supply and demand.”

For more information on companies in this article

Related Content

  • Hydrogen Mobility Europe project launched
    September 25, 2015
    A coalition of European partners has launched the Hydrogen Mobility Europe project (H2ME), co-funded with US$36 million from the Fuel Cells and Hydrogen Joint Undertaking (FCH JU). The project will support the deployment of 200 fuel cell electric vehicles (FCEVs), 125 fuel cell range-extended electric (FC RE-EVs) commercial vans and 29 new hydrogen refuelling stations (HRS) in Austria, Belgium, Denmark, France, Germany, Iceland, Netherlands, Norway, Sweden and the UK by 2019. H2ME is based around an
  • Nissan’s new analysis method may boost driving range of EVs
    May 16, 2016
    Nissan Motor Company and Nissan Arc have jointly developed an atomic analysis methodology that they claim will aid in boosting the performance of lithium-ion batteries and ultimately extend the driving range of zero-emission electric vehicles (EVs). The breakthrough was the result of a combined R&D effort between Nissan Arc, a Nissan subsidiary, Tohoku University, the National Institute for Materials Science (NIMS), the Japan Synchrotron Radiation Research Institute (JASRI) and Japan Science and Technolo
  • Transport technology transforming bus stops in Los Angeles
    January 20, 2012
    David Crawford reports on a pioneering blend of transport technology and aesthetic By gaining a design award before installation has even started, the US$6.9 million City of Santa Monica (California)'s Big Blue Bus Shelter and Branding Package has ensured early interest among what it expects to be a new wave of transit riders. The American Institute of Architects' Los Angeles chapter's recently conferred 'Next LA Citation Award for Architecture', given for design excellence in projects as yet unbuilt, comm
  • Elimination of electric vehicle systems
    June 24, 2016
    According to IDTechEx Research reports, Power Electronics for Electric Vehicles 2016-2026, Mild Hybrid 48V Vehicles 2016-2031 and Structural Electronics 2015-2025: Applications, Technologies, Forecasts”, el4ctric vehicles (EVs)have a cost challenge: hybrids have complexity problems meaning reliability and space issues. Extra power electronic units arrive for tasks such as a vehicle-to-grid, vehicle-to-house and inductive charging. Many more will be added in future such as regeneration modules - thermoelect