• DocumentCode
    740524
  • Title

    A Critical-Time-Point Approach to All-Departure-Time Lagrangian Shortest Paths

  • Author

    Gunturi, Venkata M.V. ; Shekhar, Shashi ; Yang, KwangSoo

  • Author_Institution
    Department of Computer Science, University of Minnesota, 4-192, Keller Hall, 200 Union St. SE., Minneapolis, MN, USA
  • Volume
    27
  • Issue
    10
  • fYear
    2015
  • Firstpage
    2591
  • Lastpage
    2603
  • Abstract
    Given a spatio-temporal network, a source, a destination, and a desired departure time interval, the All-departure-time Lagrangian Shortest Paths (ALSP) problem determines a set which includes the shortest path for every departure time in the given interval. ALSP is important for critical societal applications such as eco-routing. However, ALSP is computationally challenging due to the non-stationary ranking of the candidate paths across distinct departure-times. Current related work for reducing the redundant work, across consecutive departure-times sharing a common solution, exploits only partial information e.g., the earliest feasible arrival time of a path. In contrast, our approach uses all available information, e.g., the entire time series of arrival times for all departure-times. This allows elimination of all knowable redundant computation based on complete information available at hand. We operationalize this idea through the concept of critical-time-points (CTP), i.e., departure-times before which ranking among candidate paths cannot change. In our preliminary work, we proposed a CTP based forward search strategy. In this paper, we propose a CTP based temporal bi-directional search for the ALSP problem via a novel impromptu rendezvous termination condition. Theoretical and experimental analysis show that the proposed approach outperforms the related work approaches particularly when there are few critical-time-points.
  • Keywords
    Airports; Bidirectional control; Cost function; Roads; Search problems; Space exploration; Time series analysis; Road networks and Geographic Information Systems; Spatial databases; road networks and geographic information systems;
  • fLanguage
    English
  • Journal_Title
    Knowledge and Data Engineering, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    1041-4347
  • Type

    jour

  • DOI
    10.1109/TKDE.2015.2426701
  • Filename
    7095582