• DocumentCode
    2047112
  • Title

    Tactical mobility and navigational strategies of a group of mobile robots using fuzzy logic

  • Author

    Patkar, Abhijit ; Shirkhodaie, Amir

  • Author_Institution
    Intelligent Manuf. Res. Lab., Tennessee State Univ., Nashville, TN, USA
  • fYear
    2000
  • fDate
    2000
  • Firstpage
    229
  • Lastpage
    236
  • Abstract
    Addresses issues regarding mobility behaviors of a group of robots for optimum steering and gap control. The central emphasis of the paper is focused on achieving a dynamic adaptation of different fuzzy behaviors for successful tactical configurations and mobility controls of mobile robotic vehicles (MRV). The different mobility behaviors in a fuzzy logic mobility controller (FLMC) can be categorized as goal seeking behavior, leader-follower behavior, obstacle avoidance behavior, and target tracking behavior. This approach is used for limited predefined basic tasks that cover most of the relevant MRVs mobility behaviors. We have divided basic tasks into two categories, group tasks and individual tasks. Group tasks such as marching, merging, splitting, and exploratory movements are some of the challenging group tasks. On the other hand, some of the individual tasks are environment exploration, isolated navigation, and target searching. The proposed FLMC reduces instability problems associated with group mobility control of MRVs and improves overall reliability and stability in handling different mobility situations. The proposed FLMC has been developed in the FMCell simulation environment and is able to control a group of up to 16 MRVs. We present some of the simulation results of our research investigation using FMCell
  • Keywords
    digital simulation; fuzzy control; fuzzy logic; mobile robots; motion control; multi-robot systems; path planning; FMCell simulation environment; dynamic adaptation; environment exploration; exploratory movements; gap control; goal seeking behavior; group mobility; group tasks; individual tasks; instability problems; isolated navigation; leader-follower behavior; marching; merging; mobility behaviors; mobility controls; navigational strategies; obstacle avoidance behavior; optimum steering; splitting; tactical configurations; tactical mobility; target searching; target tracking behavior; Centralized control; Fuzzy control; Fuzzy logic; Merging; Mobile robots; Navigation; Robot control; Target tracking; Vehicle dynamics; Vehicles;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Southeastcon 2000. Proceedings of the IEEE
  • Conference_Location
    Nasville, TN
  • Print_ISBN
    0-7803-6312-4
  • Type

    conf

  • DOI
    10.1109/SECON.2000.845569
  • Filename
    845569