Skip to main content

Elonroad’s electric road and recharging lane for buses in Lund

Sweden’s Transport Administration (Trafikverket) has awarded a contract to the Elväg Syd consortium for an electric and recharging bus lane in the city of Lund. The demonstration area will be built in the bus lane along 1km of Getingevägen Road near central Lund. Construction will begin during the first quarter of 2020 and last for three years. The project’s budget is €9.3 million of which Trafikverket will contribute €8.3 million with the other consortium players supplying the remaining funds. Lun
April 17, 2019 Read time: 3 mins

Sweden’s Transport Administration (1096 Trafikverket) has awarded a contract to the Elväg Syd consortium for an electric and recharging bus lane in the city of Lund.

The demonstration area will be built in the bus lane along 1km of Getingevägen Road near central Lund. Construction will begin during the first quarter of 2020 and last for three years.

The project’s budget is €9.3 million of which Trafikverket will contribute €8.3 million with the other consortium players supplying the remaining funds.

Lund is a historic town of around 91,000 people with cobbled streets and home to Lund University, one of Sweden’s oldest educational institutes. The city also has one of Europe’s most developed cycling infrastructure. There are 4,800 bike parking spaces in the town, including a multi-storey facility at the railway station, more than 260km of bicycle paths and lanes. The government estimates that around 43% of journeys within the city are by bicycle.

The Elväg Syd consortium, which includes state, educational and private sector players, will use technology developed by one of the consortium members, Elonroad. Other members are Innovation Skåne coming on board as project manager, Kraftringen Energi, Lund municipality, Lund University of Technology, Skånetrafiken, Solaris Sverige and Sweden’s National Road and Transport Research Institute (7264 VTI).

The test road is based on a 200m long test track set up outside Lund in 2017 (see video). Elonroad’s concept involves a conductive rail - 5cm high and 30cm wide - laid on top of the asphalt or concrete road surface. The rail acts as a recharging infrastructure for electric vehicles with electric motors and batteries – although the Lund test site will be for only buses. The rail also has inclined sides to make it smooth for vehicles when drivers change lanes.

The rail consisting of short grounded segments are arranged along a single track. Every second segment can switch to positive when a car passes over it. Three contactors will supply a steady current rectified with diodes before charging the battery.

Rainwater passes under the road. During winter, snow can be removed by a special plow developed by Elonroad. Ice on the top surface of the rail will be melted by a heating system. A grounded strip will stop leaking current from the positive segment under the vehicle.

When the driver exits the rail system, the vehicle’s batteries take over for non-electric roads. Batteries take over automatically at exits and roundabouts.

For more information on companies in this article

Related Content

  • Instarmac’s Flowpoint fills in the spaces at Juuliku junction
    February 8, 2018
    UltraScape Flowpoint has been used at three new roundabouts as part of the €11 million Juuliku junction and section upgrade near Tallinn. The 9km project involved reconstructing areas of the road network as well as introducing a new 3.4km section of road, two bridges and viaducts and a two-level interchange. An additional three roundabouts were built with natural stone to assist with the flow of cars and trucks. Maanteeamet (the Estonian Road Administration) required a grout that would be durable and cou
  • Solar roads such as Colas’s Wattway could be the right way
    April 26, 2016
    Peter Harrop, chairman of independent research and consultancy IDTechEx, considers arguments in favour of solar roads Nowadays a major trend is the move to off-grid clean energy created by “energy harvesting” to produce electricity where it is needed. This is more controllable and increasingly at lower cost than grid power or diesel gensets, cleaner, and often less subject to interruption. It is taking new forms as revealed in the IDTechEx Research report, “High Power Energy Harvesting 2016-2026”.
  • Solar roads such as Colas’s Wattway could be the right way
    April 26, 2016
    Peter Harrop, chairman of independent research and consultancy IDTechEx, considers arguments in favour of solar roads Nowadays a major trend is the move to off-grid clean energy created by “energy harvesting” to produce electricity where it is needed. This is more controllable and increasingly at lower cost than grid power or diesel gensets, cleaner, and often less subject to interruption. It is taking new forms as revealed in the IDTechEx Research report, “High Power Energy Harvesting 2016-2026”.
  • New data is available concerning the future for electric cars
    June 25, 2012
    Increasing demand for passenger cars worldwide could boost pressure on consumers to consider electric vehicles. According to the World Bank, more cars could be built over the coming 20 years than in the entire auto industry’s 110-year history. The Organisation for Economic Co-operation and Development (OECD) predicts that between 2010 and 2050, passenger transport flow will grow by some 30% in developed countries. This increase will have a significant impact on traditional road networks and modes of transpo