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Transient performance improvement in indirect model reference adaptive control using perturbation-based extremum seeking identifier

机译:间接模型参考自适应控制中基于扰动的极值搜索标识符的暂态性能改进

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摘要

One of the main drawbacks of model reference adaptive control (MRAC) is the weakness of its transient performance. The key reason of this imperfection is parameter's estimation error convergence. For many cases in the closed-loop control, the plant input signal cannot satisfy the persistence of excitation (PE) condition which yields poor parameters estimation error convergence. In this paper, we use a fast perturbation-based extremum seeking (PES) scheme without steady-state oscillation as the parameter identifier in indirect MRAC. The estimated parameters through the PES identifier contain the additive sinusoidal signals with distinct frequencies in the transient, which satisfy the PE condition of the plant input. Therefore, convergence of the parameters estimation error to zero will be guaranteed that results in improvement of transient performance for indirect MRAC. Also, the contrary effects on the steady-state behaviour is eliminated since the sinusoidal excitation signals amplitude exponentially converge to zero and reinitiate with every change in the unknown parameters. Simulation results for a second order example have been presented to illustrate the effectiveness of the proposed scheme.
机译:模型参考自适应控制(MRAC)的主要缺点之一是其瞬态性能的弱点。缺陷的主要原因是参数的估计误差收敛。在闭环控制中的许多情况下,工厂输入信号不能满足励磁(PE)的持续条件,这会导致较差的参数估计误差收敛。在本文中,我们使用不带稳态振荡的基于快速摄动的极值搜索(PES)方案作为间接MRAC中的参数标识符。通过PES标识符估算的参数包含瞬态频率不同的加法正弦信号,这些信号满足设备输入的PE条件。因此,将确保参数估计误差收敛到零,从而改善间接MRAC的暂态性能。而且,由于正弦激励信号的振幅以指数形式收敛到零并随着未知参数的每次变化而重新启动,因此消除了对稳态行为的不利影响。给出了二阶示例的仿真结果,以说明所提出方案的有效性。

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