Distributed Constrained Optimal Coordination of Multiple Heterogeneous Systems Over a Directed Communication Network
成果类型:
Article
署名作者:
Xian, Chengxin; Liu, Yongfang; Zhao, Yu; Wen, Guanghui; Chen, Guanrong
署名单位:
City University of Hong Kong; Northwestern Polytechnical University; Southeast University - China
刊物名称:
IEEE TRANSACTIONS ON AUTOMATIC CONTROL
ISSN/ISSBN:
0018-9286
DOI:
10.1109/TAC.2025.3560512
发表日期:
2025
页码:
6577-6592
关键词:
Communication networks
Multi-agent systems
Heuristic algorithms
Vehicle dynamics
vectors
regulation
Linear systems
Event detection
cost function
training
constrained optimization
directed communication network
distributed optimization
heterogeneous multiagent system
摘要:
This article investigates the distributed optimal coordination problem and distributed constrained optimal coordination problem for multiple heterogeneous linear systems over a directed communication network. The objective is to develop distributed optimization algorithms for a set of heterogeneous linear agents over a directed communication network, which will drive the decision variables of the agents to the optimal state with optimal system performance. First, a new distributed optimal coordination algorithm is developed, comprising an output regulation tracking controller and a surplus-based optimal policy generator. This is achieved by utilizing the output regulation technique and surplus-based consensus method. Second, a projected distributed optimal coordination algorithm is designed to address the distributed constrained optimal coordination problem, where the decision variables of the agents are constrained by local feasible set constraints and network resource constraints. In comparison to previous distributed optimal coordination studies, the agent dynamics and communication framework have been significantly expanded, and this represents the first investigation of the distributed constrained optimal coordination problem for heterogeneous linear systems over weight-unbalanced directed communication networks. Finally, the practical applications of multiple rotary-wing air vehicle systems and battery energy storage systems are presented, thereby demonstrating the efficacy of the proposed distributed optimal coordination and distributed constrained optimal coordination algorithms in a real-world context.