Dynamic Node Allocation-Based Multirobot Path Planning

被引:2
|
作者
Zhao, Wenbo [1 ]
Lin, Rui [1 ]
Dong, Shuai [1 ]
Zhao, Weiwei [1 ]
Cheng, Yuhui [1 ]
机构
[1] Soochow Univ, Sch Mech & Elect Engn, Suzhou 210000, Jiangsu, Peoples R China
基金
中国国家自然科学基金;
关键词
Robots; Robot kinematics; Path planning; Collision avoidance; Servers; Logistics; Heuristic algorithms; Multirobot path planning; path truncation; graph search;
D O I
10.1109/ACCESS.2021.3097897
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
The previous multirobot path planning algorithm stipulated that more than two channels must be included in the map, causing the algorithm to malfunction in more demanding environments such as narrow passages or crossroads. In contrast, a path planning method based on heuristic search is proposed in this paper. The method truncates the path of robots and disables inverse edges so that it enables multirobots to run in a coordinated way under space-limited circumstances. First, real-time communication between the server and the robots is established. Then, the server uses heuristic search to plot a short path for the robot according to the obtained robot position and state information, during which the inverse edges of the node sequence allocated to other robots and the nodes occupied by stationary robots are not allowed to be visited. Finally, since the server has searched the paths for all the robots, the duplicated nodes are eliminated while the remnant nodes are sent to the corresponding robots. The above process loops until each robot reaches the target position. Experimental results show that this method improves the traffic efficiency of multirobots in narrow passages and allows robots to operate in an orderly manner.
引用
收藏
页码:106399 / 106411
页数:13
相关论文
共 50 条
  • [21] Leader-follower-based dynamic trajectory planning for multirobot formation
    Liu, Shuang
    Sun, Dong
    ROBOTICA, 2013, 31 : 1351 - 1359
  • [22] Control allocation-based fault tolerant control
    Argha, Ahmadreza
    Su, Steven W.
    Celler, Branko G.
    AUTOMATICA, 2019, 103 : 408 - 417
  • [23] A Novel Hybrid Neural Network-Based Multirobot Path Planning With Motion Coordination
    Pradhan, Buddhadeb
    Nandi, Arijit
    Hui, Nirmal Baran
    Roy, Diptendu Sinha
    Rodrigues, Joel J. P.
    IEEE TRANSACTIONS ON VEHICULAR TECHNOLOGY, 2020, 69 (02) : 1319 - 1327
  • [24] Multirobot Coverage Path Planning Based on Deep Q-Network in Unknown Environment
    Li, Wenhao
    Zhao, Tao
    Dian, Songyi
    JOURNAL OF ROBOTICS, 2022, 2022
  • [25] Nearest Neighbour Based Task Allocation with Multi-Agent Path Planning in Dynamic Environments
    Biswas, Sumana
    Anavatti, Sreenatha G.
    Garratt, Matthew A.
    2017 INTERNATIONAL CONFERENCE ON ADVANCED MECHATRONICS, INTELLIGENT MANUFACTURE, AND INDUSTRIAL AUTOMATION (ICAMIMIA), 2017, : 181 - 186
  • [26] Constraint Manifold Subsearch for Multirobot Path Planning with Cooperative Tasks
    Wagner, Glenn
    Kim, Jae Il
    Urban, Konrad
    Choset, Howie
    2015 IEEE INTERNATIONAL CONFERENCE ON ROBOTICS AND AUTOMATION (ICRA), 2015, : 6094 - 6100
  • [27] HIERARCHICAL PATH PLANNING IN A MULTIROBOT ENVIRONMENT WITH A SIMPLE NAVIGATION FUNCTION
    CONTE, G
    ZULLI, R
    IEEE TRANSACTIONS ON SYSTEMS MAN AND CYBERNETICS, 1995, 25 (04): : 651 - 654
  • [28] M*: A Complete Multirobot Path Planning Algorithm with Performance Bounds
    Wagner, Glenn
    Choset, Howie
    2011 IEEE/RSJ INTERNATIONAL CONFERENCE ON INTELLIGENT ROBOTS AND SYSTEMS, 2011, : 3260 - 3267
  • [29] Control allocation-based adaptive control for greenhouse climate
    Su, Yuanping
    Xu, Lihong
    Goodman, Erik D.
    INTERNATIONAL JOURNAL OF SYSTEMS SCIENCE, 2018, 49 (06) : 1146 - 1163
  • [30] Queue Allocation-Based DDoS Mitigation at Edge Switch
    Yaegashi, Ryo
    Hisano, Daisuke
    Nakayama, Yu
    2021 IEEE INTERNATIONAL CONFERENCE ON COMMUNICATIONS WORKSHOPS (ICC WORKSHOPS), 2021,