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Optimization of communication topology for persistent formation in case of communication faults

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【作者】 王国强罗贺胡笑旋台建玮

【Author】 Guo-Qiang Wang;He Luo;Xiao-Xuan Hu;Jian-Wei Tai;School of Management, Hefei University of Technology;Key Laboratory of Process Optimization & Intelligent Decision-making, Ministry of Education;Engineering Research Center for Intelligent Decision-making & Information Systems Technologies, Ministry of Education;

【通讯作者】 罗贺;

【机构】 School of Management, Hefei University of TechnologyKey Laboratory of Process Optimization & Intelligent Decision-making, Ministry of EducationEngineering Research Center for Intelligent Decision-making & Information Systems Technologies, Ministry of Education

【摘要】 To address the optimization problem of communication topology for persistent formation in the case of communication faults such as link interruption, transmitter failure, and receiver failure a two-stage model including fast reconstruction of communication topology and re-optimization of communication topology is constructed. Then, a fast reconstruction algorithm of communication topology for persistent formation(FRA-CT-PF), based on optimally rigid graph, arc addition operation, and path reversal operation, is proposed, which can quickly generate a feasible reconstructed communication topology after communication faults, thus ensuring the safety of the agents and maintaining the formation shape of persistent formation. Furthermore, a re-optimization algorithm of communication topology for persistent formation(ROA-CTPF), based on agent position exchange, is proposed, which can further obtain a reoptimized communication topology to minimize the formation communication cost while still maintaining the formation shape of persistent formation. The time complexities of these two algorithms are also analyzed. Finally, the effectiveness of the above algorithms is verified by numerical experiments. Compared with existing algorithms, FRA-CT-PF can always obtain feasible reconstructed communication topology in much less time under all communication fault scenarios, and ROA-CT-PF can obtain a reoptimized communication topology to further reduce the formation communication cost in a shorter time.

【Abstract】 To address the optimization problem of communication topology for persistent formation in the case of communication faults such as link interruption, transmitter failure, and receiver failure a two-stage model including fast reconstruction of communication topology and re-optimization of communication topology is constructed. Then, a fast reconstruction algorithm of communication topology for persistent formation(FRA-CT-PF), based on optimally rigid graph, arc addition operation, and path reversal operation, is proposed, which can quickly generate a feasible reconstructed communication topology after communication faults, thus ensuring the safety of the agents and maintaining the formation shape of persistent formation. Furthermore, a re-optimization algorithm of communication topology for persistent formation(ROA-CTPF), based on agent position exchange, is proposed, which can further obtain a reoptimized communication topology to minimize the formation communication cost while still maintaining the formation shape of persistent formation. The time complexities of these two algorithms are also analyzed. Finally, the effectiveness of the above algorithms is verified by numerical experiments. Compared with existing algorithms, FRA-CT-PF can always obtain feasible reconstructed communication topology in much less time under all communication fault scenarios, and ROA-CT-PF can obtain a reoptimized communication topology to further reduce the formation communication cost in a shorter time.

【基金】 Project supported by the National Natural Science Foundation of China (Grant Nos. 71871079, 72271076, 71971075, and 71671059);the Anhui Provincial Natural Science Foundation, China (Grant No. 1808085MG213)
  • 【文献出处】 Chinese Physics B ,中国物理B , 编辑部邮箱 ,2023年07期
  • 【分类号】TN911
  • 【下载频次】1
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