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System Modeling and Controller Design in the Presence of Nonlinear Distortions

机译:存在非线性失真的系统建模与控制器设计

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The aim of this paper is to provide an experimental examination of the application of linear system identification techniques in the design of linear model-based controllers for systems suffering nonlinear distortions. The study is conducted on an analog electrical circuit, which simulates a nonlinear mechanical resonating system. Parametric linear models are estimated from measurements taken using random-phase multisines. Furthermore, a full nonlinear model is estimated for the system. Initially, the estimated linear models and the nonlinear model are compared in terms of their performance in simulating the system dynamics. This is followed by the design of linear optimal controllers for the system based on the different models, and the performance obtained from the controllers based on the nonlinear model is set as the benchmark. It is shown that although the performance of the linear models estimated from the random multisine measurements is poor in terms of the simulation error when compared to that of the nonlinear model, it closely matches the performance of the nonlinear model in terms of controller design
机译:本文的目的是为线性系统识别技术在遭受非线性失真的系统的基于线性模型的控制器设计中的应用提供实验检验。这项研究是在模拟电路上进行的,该电路模拟了非线性机械共振系统。参数线性模型是根据使用随机相位多正弦波进行的测量估算得出的。此外,为系统估计了完整的非线性模型。最初,比较了估计的线性模型和非线性模型在模拟系统动力学方面的性能。接下来是基于不同模型的系统线性最优控制器的设计,并将基于非线性模型的控制器获得的性能作为基准。结果表明,尽管与非线性模型相比,从随机多正弦测量估计的线性模型的性能在仿真误差方面较差,但在控制器设计方面却与非线性模型的性能非常匹配

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