Chaos synchronization control for stochastic nonlinear systems of interior PMSMs based on fixed-time stability theorem

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摘要

This paper proposes an enhanced chaos synchronization control scheme of stochastic nonlinear systems for the permanent magnet synchronous motors(PMSMs) applications for dynamic operating mechanism under different working environment. Firstly, a novel fixed-time stochastic stability theorem and convergence for the stochastic nonlinear system is valid through formulating a novel Lyapunov function. Different from what has been achieved on the fixed-time stability, it’s not the usual range but it’s more precise for settling time which improving control performance effectually. Secondly, the chaos synchronization issue of driven-response PMSMs with stochastic noise is firstly investigated based on the proposed Lyapunov theorem synchronizing the complex dynamic systems considering practical significance. Finally, the fixed-time synchronization control scheme is developed via applying the adaptive algorithms, furthermore, through constructing a reasonable synchronization dynamic error system achieving stability in probability of fixed time. A simulation analysis is demonstrated to verify the availability of the proposed control strategy.

论文关键词:Chaos synchronization,Fixed-time stability,Stochastic noise,PMSMs,Adaptive control

论文评审过程:Received 3 December 2021, Revised 21 February 2022, Accepted 19 March 2022, Available online 6 May 2022, Version of Record 18 June 2022.

论文官网地址:https://doi.org/10.1016/j.amc.2022.127115