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Robust-Optimal Output-Voltage Control of Buck Converter using Fuzzy Adaptive Weighted Combination of Linear Feedback Controllers

机译:基于线性反馈控制器的模糊自适应加权组合的Buck变换器鲁棒最优输出电压控制

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This paper presents a computationally-intelligent adaptive weighted controller combination scheme to optimize the output-voltage regulation capability of a low power DC-DC buck convertor. The proposed scheme beneficially combines two linear feedback controllers; namely, Proportional-Integral-Derivative (PID) controller and Linear-Quadratic-Regulator (LQR). The PID controller provides control effort based on the error-dynamics of output-voltage. Wherein, the term regarding the error-derivative is replaced with the information of capacitor-current to nullify the effects of noise injected by the derivative action during transients. The LQR provides optimal control decisions by utilizing the state-feedback of inductor-current and output-voltage. The outputs of PID controller and LQR are linearly combined by computing their weighted sum. The fixed weightages associated with each controller cannot compensate the parametric uncertainties and load-step transients. Therefore, the weightages are adaptively self-tuned via a hyperbolic tangent function of error in output voltage. The performance of weighted control scheme is also investigated by augmenting it with a fuzzy inference system that directly captures the variations in output-voltage and capacitor-current to adaptively self-tune the weightages. The performances of aforementioned weighted controllers are comparatively analyzed via credible real-time experiments. The fuzzy weighted controller yields time-optimal control effort during step-reference tracking and offers minimum-time transient recovery during load variations.
机译:本文提出了一种计算智能的自适应加权控制器组合方案,以优化低功率DC-DC降压转换器的输出电压调节能力。所提出的方案有益地结合了两个线性反馈控制器。即比例积分微分(PID)控制器和线性二次调节器(LQR)。 PID控制器根据输出电压的误差动态提供控制作用。其中,关于误差微分的术语用电容器电流信息代替,以消除瞬态期间由微分作用注入的噪声的影响。 LQR通过利用电感器电流和输出电压的状态反馈来提供最佳控制决策。 PID控制器和LQR的输出通过计算它们的加权和而线性组合。与每个控制器关联的固定权重无法补偿参数不确定性和负载阶跃瞬变。因此,权重通过输出电压误差的双曲正切函数进行自适应自调整。还通过使用模糊推理系统对其进行增强来研究加权控制方案的性能,该系统可直接捕获输出电压和电容器电流的变化以自适应地自调整权重。通过可靠的实时实验对上述加权控制器的性能进行了比较分析。模糊加权控制器在阶跃参考跟踪期间产生时间最优的控制效果,并在负载变化期间提供最短时间的瞬态恢复。

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