• DocumentCode
    610442
  • Title

    RoadAlarm: A spatial alarm system on road networks

  • Author

    Kisung Lee ; Yigitoglu, E. ; Ling Liu ; Binh Han ; Palanisamy, Balaji ; Pu, Calton

  • fYear
    2013
  • fDate
    8-12 April 2013
  • Firstpage
    1372
  • Lastpage
    1375
  • Abstract
    Spatial alarms are one of the fundamental functionalities for many LBSs. We argue that spatial alarms should be road network aware as mobile objects travel on spatially constrained road networks or walk paths. In this software system demonstration, we will present the first prototype system of ROADALARM - a spatial alarm processing system for moving objects on road networks. The demonstration system of ROAD-ALARM focuses on the three unique features of ROADALARM system design. First, we will show that the road network distance-based spatial alarm is best modeled using road network distance such as segment length-based and travel time-based distance. Thus, a road network spatial alarm is a star-like subgraph centered at the alarm target. Second, we will show the suite of ROADALARM optimization techniques to scale spatial alarm processing by taking into account spatial constraints on road networks and mobility patterns of mobile subscribers. Third, we will show that, by equipping the ROADALARM system with an activity monitoring-based control panel, we are able to enable the system administrator and the end users to visualize road network-based spatial alarms, mobility traces of moving objects and dynamically make selection or customization of the ROADALARM techniques for spatial alarm processing through graphical user interface. We show that the ROADALARM system provides both the general system architecture and the essential building blocks for location-based advertisements and location-based reminders.
  • Keywords
    alarm systems; graphical user interfaces; mobile computing; traffic engineering computing; LBS; ROADALARM system; ROADALARM system design; ROADALARM techniques; activity monitoring-based control panel; alarm target; fundamental functionalities; general system architecture; graphical user interface; location-based advertisements; location-based reminders; mobile objects; mobile subscribers; mobility patterns; mobility traces; moving objects; road network distance; road network spatial alarm processing system; road network-based spatial alarm visualization; software system demonstration; spatially constrained road networks; star-like subgraph; suite processing; system administrator; walk paths; Accuracy; Barium; Engines; Euclidean distance; Mobile communication; Mobile computing; Roads;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Data Engineering (ICDE), 2013 IEEE 29th International Conference on
  • Conference_Location
    Brisbane, QLD
  • ISSN
    1063-6382
  • Print_ISBN
    978-1-4673-4909-3
  • Electronic_ISBN
    1063-6382
  • Type

    conf

  • DOI
    10.1109/ICDE.2013.6544947
  • Filename
    6544947