A real-time traffic control scheme of multiple AGV systems for collision free minimum time motion: A routing table approach

  • Lee, Junghoon
  • Lee, Beomhee O.
  • Choi, Myoung-hwan
Citations

SCOPUS

53

초록

A two-staged traffic control scheme, in which sets of candidate paths are prepared off-line prior to overall motion planning process, has been widely adopted for motion planning of mobile robots, but relatively little attention has been given to the application of the two-staged scheme to multiple automated guided vehicle systems (MAGVS's). In this paper, a systematic two-staged traffic control scheme is presented to obtain collisionfree minimum-time motions of AGV's along loopless paths. The overall structure of the controller is divided into two tandem modules of off-line routing table generator (RTG) and an on-line traffic controller (OTC). First, an induced network model is established considering the configurational restrictions of guidepaths. With this model and a modified k-shortest path algorithm, RTG finds sets of k candidate paths from each station nodes to all the other station nodes off-line and stores them in the form of routing tables. Each time a dispatch command for an AGV is issued, OTC utilizes these routing tables to generate a collision-free minimum-time motion along a loopless path. Real-time computation is guaranteed in that time-consuming graph searching process is executed off-line by RTG, and OTC looks for the minimum time motion among the k candidate paths. The traffic control scheme proposed is suitable for practical application in centralized MAGVS with zone blocking technique. © 1998 IEEE.

키워드

Automated guided vehicle (AGV)k-shortest pathsTraffic control
제목
A real-time traffic control scheme of multiple AGV systems for collision free minimum time motion: A routing table approach
저자
Lee, JunghoonLee, Beomhee O.Choi, Myoung-hwan
DOI
10.1109/3468.668966
발행일
1998
유형
Article
저널명
IEEE Transactions on Systems, Man and Cybernetics Part A: Systems and Humans.
28
3
페이지
347 ~ 358