Skip to main content

Final 2012/2013 AERIS webinar

The fifth and final webinar of the AERIS Fall//Winter 2012-2013 Webinar Series will take place on Wednesday, March 13, 2013 at 1:00 pm EST. The webinar will describe the results of a recent connected vehicle field experiment performed in two locations (University of California at Riverside and the Turner Fairbank Highway Research Center). Complementary modelling results will also be described. The field experiment was conducted in August 2012 and was based on the AERIS Program's Eco-Approach and Departure a
March 1, 2013 Read time: 2 mins
The fifth and final webinar of the AERIS Fall//Winter 2012-2013 Webinar Series will take place on Wednesday, March 13, 2013 at 1:00 pm EST.

The webinar will describe the results of a recent connected vehicle field experiment performed in two locations (University of California at Riverside and the Turner Fairbank Highway Research Center). Complementary modelling results will also be described.
 
The field experiment was conducted in August 2012 and was based on the AERIS Program's Eco-Approach and Departure at Signalised Intersections application. The field experiment included a roadside equipment (RSE) unit installed at a traffic signal broadcasting signal phase and timing (SPaT) messages using 5.9 GHz dedicated short range communication (DSRC). SPaT messages were received by the in-vehicle application and uses to provide speed recommendations to the driver that encourage green approaches to signalised intersections. Green approaches include speed recommendations that when applied allow the vehicle to traverse the signalized intersection on green or decelerating to a stop in the most environmentally efficient manner. Results were measured in terms of fuel savings and carbon-dioxide (CO2) emissions reductions.

Dr Matthew Barth, the Director of the University of California, Riverside's Center for Environmental Research and Technology (CE-CERT), who conducted the study, will lead the webinar.  In addition, Dr Barth will discuss initial modeling efforts being conducted by the AERIS Program as they relate to Eco-Signal Operations.

Related Content

  • TTS enabling drivers to see the light
    September 1, 2022
    Traffic Technology Services (TTS) is the leading provider of technologies and information supporting today’s connected vehicle applications. The company’s cloud-based platform enables increased safety and efficiency for drivers by connecting vehicles to traffic signals and other roadway infrastructure, as visitors to the company’s stand will learn. 
  • Volvo warns EU on its approach to electric vehicles and its transport white paper
    March 22, 2012
    Volvo Car Corporation warns that EU targets for cutting carbon dioxide emissions are being jeopardised by the absence of harmonised incentives to consumers. Another key issue is the urge for continuous support to automotive research and development, including electromobility. Stefan Jacoby, president and CEO of Volvo Car Corporation, told an industry seminar in Brussels yesterday that jobs, investment and competitiveness in the European car industry could be threatened by the European Commission's approach
  • 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
  • USDOT announces new connected vehicle test bed affiliation
    May 13, 2013
    The US Department of Transportation has released a memorandum that helps to create an affiliation of 5.9GHz dedicated short range communications (DSRC) infrastructure device makers, operators of vehicle-to-infrastructure (V2I) installations, and developers of applications that use V2I communications. The objective is to harness the collective abilities of these members to transition the technology toward full deployment by allowing for the exchange of information, the sharing of deployment lessons learned,