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Fixed-time observer-based consensus for linear multi-agent systems with input delay and unknown inputs
DOI:10.1080/00207721.2026.2727660.png)
Abstract
En 中文
This paper addresses the fixed-time leader-follower consensus problem for linear homogenous multi-agent systems subject to simultaneous input delay and unknown inputs, which may be matched or unmatched. A unified observer-based control framework is proposed. First, the Artstein approach is applied to transform the delayed system into a delay-free equivalent. A novel fixed-time unknown input observer is then designed to simultaneously estimate the transformed states and unknown inputs within a bounded time, with sufficient conditions established for its distributed implementation. Based on these estimates, a distributed cooperative control protocol is synthesised to guarantee fixed-time consensus tracking. The overall design ensures that both estimation and consensus are achieved within a fixed settling time, independent of initial conditions. Numerical simulations validate the effectiveness and robustness of the proposed method.
Keywords:
Cooperative multi-agent system
fixed-time stability
unknown input observer
input-delay
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4.6
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1.1K
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