Optimal Control of Cooperative Multi-Vehicle Systems

被引:2
|
作者
Reinl, Christian [1 ]
Glocker, Markus [2 ]
von Stryk, Oskar [1 ]
机构
[1] Tech Univ Darmstadt, FB Informat, D-64289 Darmstadt, Germany
[2] Trimble Terrasat GmbH, D-85635 Hohenkirchen, Germany
关键词
Nonlinear mixed-integer optimal control; hybrid dynamical systems; switched dynamics and constraints; cooperative multi-vehicle systems; LOGIC;
D O I
10.1524/auto.2009.0778
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
Nonlinear hybrid dynamical systems for modeling optimal cooperative control enable a tight and formal coupling of discrete and continuous state dynamics, i. e. of dynamic role and task assignment with switching dynamics of motions. In the resulting mixed-integer multi-phase optimal control problems constraints on the discrete and continuous state and control variables can be considered, e. g., formation or communication requirements. Two numerical methods are investigated: a decomposition approach using branch-and-bound and direct collocation methods as well as an approximation by large-scale, mixed-integer linear problems. Both methods are applied to example problems: the optimal simultaneous waypoint sequencing and trajectory planning of a team of aerial vehicles and the optimization of role distribution and trajectories in robot soccer.
引用
收藏
页码:296 / 305
页数:10
相关论文
共 50 条
  • [31] Consensus based formation control strategies for multi-vehicle systems
    Ren, Wei
    [J]. 2006 AMERICAN CONTROL CONFERENCE, VOLS 1-12, 2006, 1-12 : 4237 - 4242
  • [32] Trust in Multi-Vehicle Systems Using MDP Control Strategies
    Delamer, Jean-Alexis
    Givigi, Sidney
    [J]. 2020 IEEE INTERNATIONAL CONFERENCE ON SYSTEMS, MAN, AND CYBERNETICS (SMC), 2020, : 2377 - 2382
  • [33] Distributed Collaborative Control of Multi-Vehicle Autonomous Cooperative Transportation Systems: A Hierarchical Constraint-Following Approach
    Zhang, Bowei
    Huang, Jin
    Su, Yanzhao
    Chen, Ye-Hwa
    Yang, Diange
    Zhong, Zhihua
    [J]. IEEE TRANSACTIONS ON INTELLIGENT TRANSPORTATION SYSTEMS, 2024, 25 (05) : 4251 - 4264
  • [34] Stability and safety of multi-vehicle systems
    Wang, Y
    [J]. PROCEEDINGS OF THE 2004 AMERICAN CONTROL CONFERENCE, VOLS 1-6, 2004, : 2339 - 2343
  • [35] Coordination of networked multi-vehicle systems
    Casavola, A
    Mosca, E
    Papini, M
    [J]. IV'2002: IEEE INTELLIGENT VEHICLE SYMPOSIUM, PROCEEDINGS, 2002, : 419 - 435
  • [36] Flocking of multi-vehicle systems with a leader
    Liu, Bo
    Chu, Tianguang
    Wang, Long
    [J]. 2006 IEEE/RSJ INTERNATIONAL CONFERENCE ON INTELLIGENT ROBOTS AND SYSTEMS, VOLS 1-12, 2006, : 5948 - +
  • [37] Cooperative Multi-Vehicle Behavior Coordination for Autonomous Driving
    Kessler, Tobias
    Knoll, Alois
    [J]. 2019 30TH IEEE INTELLIGENT VEHICLES SYMPOSIUM (IV19), 2019, : 1953 - 1960
  • [38] Optimal Multi-Vehicle Type Transit Timetabling and Vehicle Scheduling
    Ceder, Avishai
    [J]. STATE OF THE ART IN THE EUROPEAN QUANTITATIVE ORIENTED TRANSPORTATION AND LOGISTICS RESEARCH, 2011: 14TH EURO WORKING GROUP ON TRANSPORTATION & 26TH MINI EURO CONFERENCE & 1ST EUROPEAN SCIENTIFIC CONFERENCE ON AIR TRANSPORT, 2011, 20
  • [39] Distributed Formation Control for Multi-Vehicle Systems With Splitting and Merging Capability
    Novoth, Szilard
    Zhang, Qian
    Ji, Kang
    Yu, Dingli
    [J]. IEEE CONTROL SYSTEMS LETTERS, 2021, 5 (01): : 355 - 360
  • [40] Fault-tolerant cooperative output regulation for multi-vehicle systems with sensor faults
    Qin, Liguo
    He, Xiao
    Zhou, D. H.
    [J]. INTERNATIONAL JOURNAL OF CONTROL, 2017, 90 (10) : 2227 - 2248