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Complementary PID Controller to Passivity-Based Nonlinear Control of Boost Converters With Inductor Resistance

机译:具有电感电阻的Boost变换器基于PID的无源非线性控制的补充PID控制器

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Since the DC-DC boost converter exhibits highly nonlinear and non-minimum phase properties, it is not an easy task to design a controller that is robust against load perturbations. This paper presents a dynamic output feedback controller for a DC-DC boost converter that has a practical inductor and a series resistance. In order to maintain its robust output voltage regulation, the proposed controller adopts a simplified parallel-damped passivity-based controller (PD-PBC). A complementary proportional-integral-differential (PID) controller to the PD-PBC has been designed for removing the steady state error owing to the parasitic resistance. We present sufficient conditions for the asymptotic stability of the augmented system with an additional dynamic system. Computer simulations and experimental tests under reference step changes and load perturbations confirm the improved performance of the proposed approach.
机译:由于DC-DC升压转换器表现出高度的非线性和非最小相位特性,因此设计一种能够抵抗负载扰动的控制器并非易事。本文提出了一种用于DC-DC升压转换器的动态输出反馈控制器,该控制器具有实用的电感器和串联电阻。为了维持其稳定的输出电压调节,建议的控制器采用简化的基于并联阻尼的无源控制器(PD-PBC)。已经设计了PD-PBC的互补比例积分微分(PID)控制器,以消除由于寄生电阻引起的稳态误差。我们提出了具有附加动力系统的增广系统渐近稳定性的充分条件。在参考阶跃变化和负载扰动下的计算机仿真和实验测试证实了所提出方法的改进性能。

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