Robust output formation control for swarm systems with nonlinear uncertainties in directed networks

Xiaofeng Chai, Qing Wang, Yao Yu
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引用次数: 1

Abstract

In this study, output formation control problems for high-order time-invariant swarm systems with unknown nonlinear uncertainties and directed interaction topologies are studied using a robust controller. First, the dimensions of the observation matrix are extended to be non-singular. Then the output formation problem is transformed into consensus problem. Based on observability decomposition, the consensus problem is transformed into stability problem. Further more, A robust controller which consists of a nominal controller and a robust compensator is applied to achieve formation control. The nominal controller based on the output feedback is designed to achieve desired output formation properties for the nominal system and the robust compensator based on the robust signal compensator technology is to restrain the nonlinear uncertainties. The proposed controller is linear, time invariant and easy to implement. Based on partial stability theory, sufficient and necessary conditions for output formation feasibility are given and the formation errors can be made as small as desired with expected convergence rate.
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具有非线性不确定性的有向网络群系统鲁棒输出编队控制
本文研究了具有未知非线性不确定性和有向相互作用拓扑的高阶定常群系统的输出编队控制问题。首先,将观测矩阵的维数扩展为非奇异。然后将产出形成问题转化为共识问题。基于可观察性分解,将一致性问题转化为稳定性问题。采用由标称控制器和鲁棒补偿器组成的鲁棒控制器实现编队控制。基于输出反馈的标称控制器是为了实现系统的理想输出形成特性,基于鲁棒信号补偿技术的鲁棒补偿器是为了抑制非线性不确定性。该控制器具有线性、时不变、易于实现的特点。基于部分稳定性理论,给出了输出地层可行性的充分必要条件,使地层误差在预期收敛速率下尽可能小。
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