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Deadlock-free dynamic resource assignment in multi-robot systems with multiple missions: application in wireless sensor networks
作者姓名:P. M. BALLAL  A.C.TRIVEDI  V. GIORDANO  J.MIRELES Jr.  F. L. LEWIS
作者单位:Automation & Robotics Research Institute, University of Texas at Arlington, J. Newell Blvd. 7300, Fort' Worth TX 76118, USA
基金项目:the Army Research Office (ARO) (DAAD 19-02-1-0366, ARO W91NF-05-1-0314), the National Science Foundation
摘    要:

关 键 词:机器人系统  无线传感器网络  资源动态分配  无死锁  多任务  动态资源分配  LabVIEW  应用
收稿时间:9/9/2009 12:00:00 AM
修稿时间:2009/9/18 0:00:00

Deadlock-free dynamic resource assignment in multi-robot systems with multiple missions: Application in Wireless Sensor Networks
P. M. BALLAL,A.C.TRIVEDI,V. GIORDANO,J.MIRELES Jr.,F. L. LEWIS.Deadlock-free dynamic resource assignment in multi-robot systems with multiple missions: Application in Wireless Sensor Networks[J].Journal of Control Theory and Applications,2010,8(1):12-19.
Authors:P M BALLAL  ACTRIVEDI  V GIORDANO  JMIRELES Jr and F L LEWIS
Affiliation:Automation & Robotics Research Institute,University of Texas at Arlington,J.Newell Blvd.7300,Fort Worth TX 76118,USA
Abstract:In unstructured environments, dynamic resource assignment is required for effective cooperation of robot teams. In some scenarios, robots are in charge of executing multiple missions simultaneously. This creates risks of deadlock due to the presence of shared resources among various missions. The main contribution of this paper is the development of a novel approach that combines the one-step look-ahead deadlock avoidance policy with dynamic resource assignment. The dynamic resource assignment is achieved using greedy resource assignment for multi-mission robot teams in the framework of a matrix-based discrete event controller. Simulation results are presented in MATLAB°R to discuss in detail the proposed control strategy. The paper also discusses the toolkit developed in LabVIEW°R which is used to implement this control framework using a suitable example.
Keywords:Discrete event systems  Wireless sensor networks  Deadlock avoidance  Petri nets
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