• DocumentCode
    3766538
  • Title

    Estimate of fuel consumption and GHG emission impact from an automated mobility district

  • Author

    Yuche Chen;Stanley Young;Xuewei Qi;Jeffrey Gonder

  • Author_Institution
    National Renewable Energy Laboratory, Golden, CO 80401, USA
  • fYear
    2015
  • Firstpage
    271
  • Lastpage
    278
  • Abstract
    This study estimates the range of fuel and emissions impacts of an automated-vehicle (AV)-based transit system that services campus-based developments, termed an automated mobility district (AMD). The study develops a framework to quantify the fuel consumption and greenhouse gas (GHG) emission impacts of a transit system comprised of AVs, taking into consideration average vehicle fleet composition, fuel consumption/GHG emission of vehicles within specific speed bins, and the average occupancy of passenger vehicles and transit vehicles. The framework is exercised using a previous mobility analysis of a personal rapid transit (PRT) system, a system that shares many attributes with envisioned AV-based transit systems. Total fuel consumption and GHG emissions with and without an AMD are estimated, providing a range of potential system impacts on sustainability. The results of a previous case study based on a proposed implementation of PRT on the Kansas State University (KSU) campus in Manhattan, Kansas, serve as the basis for estimating personal miles traveled supplanted by an AMD at varying levels of service. The results show that an AMD has the potential to reduce total system fuel consumption and GHG emissions, but the amount is largely dependent on operating and ridership assumptions. The study points to the need to better understand ride-sharing scenarios and calls for future research on sustainability benefits of an AMD system at both vehicle and system levels.
  • Keywords
    "Vehicles","Fuels","Connected vehicles","Conferences","Sociology","Statistics","Reliability"
  • Publisher
    ieee
  • Conference_Titel
    Connected Vehicles and Expo (ICCVE), 2015 International Conference on
  • Electronic_ISBN
    2378-1297
  • Type

    conf

  • DOI
    10.1109/ICCVE.2015.32
  • Filename
    7447610