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Robust Flatness based Control with Disturbance Observers of Non-Ideal Boost Converter for Electric Vehicles

机译:电动汽车非理想升压变换器扰动观测器的鲁棒平坦度控制

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In this paper, a robust dual loop control strategy based on the flatness properties and disturbance estimations is proposed for the non-ideal Boost converter under the unknown external disturbances. By means of the flatness based control approach, an outer loop for the output voltage regulation and an inner loop for the inductor current tracking are designed in detail. Meanwhile, taking into account the model losses of the non-ideal Boost converter and the flatness based control is a model control method, the disturbance observers are constructed to calculate the input voltage and the output current for avoiding the use of the sensors. In order to validate the feasibility and robustness of the proposed control scheme as well as the estimated accuracy of the disturbance observers, various simulations in the presence of sinusoidal input voltage perturbations and sinusoidal load resistance disturbances are realized.
机译:本文提出了一种基于平坦度特性和干扰估计的鲁棒双环控制策略,该方法适用于未知外部干扰情况下的非理想Boost变换器。通过基于平坦度的控制方法,详细设计了用于调节输出电压的外部环路和用于电感器电流跟踪的内部环路。同时,考虑到非理想Boost转换器的模型损耗和基于平坦度的控制是一种模型控制方法,构造了干扰观测器以计算输入电压和输出电流,从而避免了使用传感器。为了验证所提出的控制方案的可行性和鲁棒性以及扰动观测器的估计精度,在存在正弦输入电压扰动和正弦负载电阻扰动的情况下,进行了各种仿真。

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