网络化不确定欧拉-拉格朗日系统有限时间保持连通性会合的稳定时间估计

Settling-Time Estimation for Finite-Time Connectivity-Preserving Rendezvous of Networked Uncertain Euler-Lagrange Systems

IEEE Transactions on Systems, Man, and Cybernetics: Systems · 2023
被引 12
ABS 3

中文导读

研究了网络化不确定欧拉-拉格朗日系统的有限时间保持连通性会合问题,提出了两层分布式估计与控制架构,并重点估计了稳定时间。

Abstract

This article addresses finite-time connectivity-preserving rendezvous problems of networked uncertain Euler-Lagrange systems, where two types of time-varying leaders are investigated, and only a subset of followers can have access to the leader’s trajectory. The distributed estimation and control architecture is then established to solve this problem with an emphasis on the settling-time estimation. In particular, in the first layer, the finite-time distributed estimators are developed to estimate and reconstruct the states of both linear and nonlinear leaders, respectively. In the second layer, distributed controllers are designed for consensus tracking in a finite-time using estimated leader information. Further, to account for limited sensing ranges, another distributed algorithm is given via an artificial potential field to guarantee finite-time rendezvous. Numerical simulation results are given to validate the effectiveness of the proposed designs.

控制理论多智能体系统分布式估计非线性系统