基于统一输出反馈的异构多智能体系统预定性能一致性跟踪控制

IF 19.2 1区 计算机科学 Q1 AUTOMATION & CONTROL SYSTEMS
Dahui Luo;Yujuan Wang;Frank L. Lewis;Yongduan Song
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引用次数: 0

摘要

针对一类具有不一致系统结构的异构多智能体系统(HMASs),提出了一种基于输出反馈的规定性能一致性跟踪控制方法,该方法允许系统的性能行为彼此不同。由于系统结构的异构和性能要求的不一致,使得控制问题比结构和性能要求相同的质量控制问题更具挑战性。这主要是由于系统动力学的耦合效应和各智能体在协同控制动作中的性能约束所致。解决这一问题的关键是引入一种双相位性能保证方法,该方法将共识跟踪误差分解为辅助跟踪误差和滤波器跟踪误差,然后将整个性能控制分解为两阶段。通过分别限定这两种误差,可以证明只需调整设计参数而不修改控制结构,实际跟踪误差就被明确地限定在任意给定的性能包络内。此外,规定性能控制(PPC)结果不仅与任何初始条件和设计参数一致,使其具有全局性,而且将全局和半全局结果统一到一个框架中,区别于大多数现有的PPC作品只保证全局或半全局结果。最后,通过对一组隧道二极管电路(TDC)的仿真验证了所提控制方案的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Unified Output Feedback Based Prescribed Performance Consensus Tracking Control of Heterogeneous Multi-Agent Systems
This paper proposes an output-feedback based prescribed performance consensus tracking control methodology for a class of heterogeneous multi-agent systems (HMASs) with inconsistent system structure, where the performance behavior is allowed to be different from that of each other. Both the heterogeneous system structures and the nonidentical performance requirements make the control problem much more challenging than that of MASs with identical structure and performance requirement. This is mainly due to the coupling effect of the system dynamics and performance restriction of each agent in the cooperative control action. The key to solve this problem is to introduce a dual-phase performance-guaranteed method, in which the consensus tracking error is decomposed into auxiliary tracking error and filter tracking error and then the whole performance control is decomposed into two phases. By confining the two errors respectively, the practical tracking error can be proved to be explicitly confined within an arbitrarily given performance envelope by merely adjusting the design parameters rather than modifying control structure. Moreover, the prescribed performance control (PPC) result is not only uniform with any initial conditions and design parameters, allowing it to be global, but also unifying both the global and semi-global result into one frame, distinguishing itself from most existing PPC works where either only global or only semi-global result is guaranteed. Finally, the effectiveness of the proposed control scheme is confirmed by the simulation conducted on a group of tunnel-diode circuits (TDC).
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来源期刊
Ieee-Caa Journal of Automatica Sinica
Ieee-Caa Journal of Automatica Sinica Engineering-Control and Systems Engineering
CiteScore
23.50
自引率
11.00%
发文量
880
期刊介绍: The IEEE/CAA Journal of Automatica Sinica is a reputable journal that publishes high-quality papers in English on original theoretical/experimental research and development in the field of automation. The journal covers a wide range of topics including automatic control, artificial intelligence and intelligent control, systems theory and engineering, pattern recognition and intelligent systems, automation engineering and applications, information processing and information systems, network-based automation, robotics, sensing and measurement, and navigation, guidance, and control. Additionally, the journal is abstracted/indexed in several prominent databases including SCIE (Science Citation Index Expanded), EI (Engineering Index), Inspec, Scopus, SCImago, DBLP, CNKI (China National Knowledge Infrastructure), CSCD (Chinese Science Citation Database), and IEEE Xplore.
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