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Uncertainty Modeling and Robust Control for LCL Resonant Inductive Power Transfer System

机译:LCL谐振感应功率传输系统的不确定性建模和鲁棒控制

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摘要

The LCL resonant inductive power transfer (IPT) system is increasingly used because of its harmonic filtering capabilities, high efficiency at light load, and unity power factor feature. However, the modeling and controller design of this system become extremely difficult because of parameter uncertainty, high-order property, and switching nonlinear property. This paper proposes a frequency and load uncertainty modeling method for the LCL resonant IPT system. By using the linear fractional transformation method, we detach the uncertain part from the system model. A robust control structure with weighting functions is introduced, and a control method using structured singular values is used to enhance the system performance of perturbation rejection and reference tracking. Analysis of the controller performance is provided. The simulation and experimental results verify the robust control method and analysis results. The control method not only guarantees system stability but also improves performance under perturbation.
机译:由于LCL谐振感应功率传输(IPT)系统具有谐波滤波功能,轻载时的高效率和单位功率因数特性,因此越来越多地被使用。然而,由于参数不确定性,高阶特性和切换非线性特性,该系统的建模和控制器设计变得极为困难。本文提出了一种用于LCL谐振IPT系统的频率和负载不确定性建模方法。通过使用线性分数变换方法,我们将不确定部分从系统模型中分离出来。介绍了一种具有加权功能的鲁棒控制结构,并采用了一种利用结构奇异值的控制方法来提高系统的摄动抑制和参考跟踪性能。提供了控制器性能的分析。仿真和实验结果验证了鲁棒控制方法和分析结果。该控制方法不仅保证了系统的稳定性,而且还改善了扰动下的性能。

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