多智能体系统中基于分布式滑模控制的二阶一致性

Second-Order Consensus in Multiagent Systems via Distributed Sliding Mode Control

IEEE Transactions on Cybernetics · 2016
被引 177
ABS 3

中文导读

提出一种新的解耦分布式滑模控制方法,解决多智能体系统二阶一致性问题,消除奇异性并减弱抖振,为网络化系统滑模控制设计提供通用框架。

Abstract

In this paper, the new decoupled distributed sliding-mode control (DSMC) is first proposed for second-order consensus in multiagent systems, which finally solves the fundamental unknown problem for sliding-mode control (SMC) design of coupled networked systems. A distributed full-order sliding-mode surface is designed based on the homogeneity with dilation for reaching second-order consensus in multiagent systems, under which the sliding-mode states are decoupled. Then, the SMC is applied to the decoupled sliding-mode states to reach their origin in finite time, which is the sliding-mode surface. The states of agents can first reach the designed sliding-mode surface in finite time and then move to the second-order consensus state along the surface in finite time as well. The DSMC designed in this paper can eliminate the influence of singularity problems and weaken the influence of chattering, which is still very difficult in the SMC systems. In addition, DSMC proposes a general decoupling framework for designing SMC in networked multiagent systems. Simulations are presented to verify the theoretical results in this paper.

多智能体系统滑模控制分布式控制一致性非线性系统