Skip to main content

GE, Ford, University of Michigan working to extend EV battery life

GE researchers, in partnership with Ford Motor Company and the University of Michigan, are working together to develop a smart, miniaturised sensing system that has the potential to significantly extend the life of car batteries over conventional battery systems used in electric vehicles today.
August 6, 2012 Read time: 2 mins

940 GE researchers, in partnership with 278 Ford Motor Company and the University of Michigan, are working together to develop a smart, miniaturised sensing system that has the potential to significantly extend the life of car batteries over conventional battery systems used in electric vehicles today.

“The car battery remains the greatest barrier and most promising opportunity to bringing EVs mainstream.” said Aaron Knobloch, principal investigator and mechanical engineer at GE Global Research. “Improvements in the range, cost and life of the battery will all be needed for EVs to be competitive. With better sensors and new battery analytics, we think we can make substantial progress at increasing battery life. This, in turn, could help bring down its overall cost and the cost entitlement of buying an electric car.”

To improve the life and reduce the lifecycle cost of EV batteries, GE will combine a novel ultrathin battery sensor system with sophisticated modelling of cell behaviour to control and optimise battery management systems. Today’s sensors on EVs and plug-in hybrid vehicles (PHEVs) measure the health of the battery by looking at factors such as its temperature, voltage, and current. However, these measurements provide a limited understanding of a battery’s operation and health. The goal of the ARPA-E project will be to develop small, cost effective sensors with new measurement capabilities. Due to their small size, these sensors will be placed in areas of the battery where existing sensor technologies cannot be currently located. The combination of small size and ability to measure new quantities will enable a much better understanding of battery performance and life.

A group of scientists from the 5594 University of Michigan, led by Anna Stefanopoulou, a professor of mechanical engineering, will use the data generated by GE sensors to verify advanced battery models. They will ultimately create schemes that use instantaneous sensor data to predict future battery-cell and battery-pack behaviour.

The use of sensors in conjunction with real-time models will enable novel algorithms that optimise how the battery system is managed to extend its life. To demonstrate the capabilities of the sensor system and analytics, Ford will integrate them into one of their vehicles for validation.

For more information on companies in this article

Related Content

  • Do we need a new approach to ITS and traffic management?
    January 31, 2012
    In an article which has implications for the European Electronic Toll Service, ASECAP's Kallistratos Dionelis asks whether the approach we currently take to major ITS system implementations is always the best or healthiest. I was asked recently to write a paper on the technology-oriented future of transport. To paraphrase, I started with: "The goal of European policy-makers is to establish a transport system which meets society's economic, social and environmental needs, satisfying in parallel a rising dema
  • Aimsun shows latest release of mobility software
    March 21, 2018
    The Aimsun team is here at Intertraffic to showcase the latest release of Aimsun Next mobility modelling software, which includes options for modelling air pollutants. This new emissions model measures CO2 and NOx emissions from configurable fleets of European vehicles and will be extended to North American fleets in the future It is available in microscopic and mesoscopic simulations. The latest version of Aimsun Next incorporates the average-speed London Emissions Model (LEM), developed by Transport for
  • The weighty problem of truck routing enforcement
    March 17, 2015
    The growing impact of heavy commercial vehicles on urban and interurban highway infrastructures around the world is driving the need for reliable route access restriction and monitoring. The support role of enforcement is proving fertile ground for ITS development. Bridges are especially vulnerable – and critical in terms of travel delays. The US state of Oregon’s Department of Transportation (ODOT) operates what it claims is one of the country’s most aggressive truck route restriction enforcement programme
  • Optibus and Enel X link on eBus solution 
    December 24, 2021
    Partners in software and EV infrastructure will focus on Latin America, North America & Europe