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A Control Algorithm for Buck Converter under Inductive and Resistive Load

机译:感性和电阻性负载下的Buck变换器控制算法

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The problem of the output voltage stabilization of buck converter is considered in the paper. It is assumed, that the stabilizer serves as power supply for inductive and resistive load, which can be described by differential equation with time-varying coefficients. The value of the equivalent inductance and resistance are unknown, but they belong to the class of bounded functions with several bounded derivatives with known bounds. According to these bounds, the influence of the external load is described as additive disturbance, which excites the right hand side of the differential equation of the control plant. By using the, so-called, "vortex" algorithm, the control input synthesis is developed in the paper, which theoretically provides asymptotical stabilization of the output voltage error to zero. The formal conditions for the parameters of the converter and the electrical load are derived. The theoretical results may be used for designing of the buck converters with the desired output characteristics. The proposed control scheme is developed for further usage in the electromechanical systems, especially for control of the input voltage of the electric drives. The simulation results show the efficiency of the basic control law.
机译:本文考虑了降压转换器的输出电压稳定问题。假设稳定器用作感性和阻性负载的电源,这可以通过具有时变系数的微分方程来描述。等效电感和电阻的值是未知的,但是它们属于具有几个已知边界的有界导数的有界函数的类别。根据这些界限,外部负载的影响被描述为加性扰动,它激起了控制设备微分方程的右手边。通过使用所谓的“涡旋”算法,本文开发了控制输入综合,从理论上讲,它可以将输出电压误差渐近稳定到零。得出转换器参数和电气负载的形式条件。理论结果可用于设计具有所需输出特性的降压转换器。提出的控制方案被开发用于进一步在机电系统中使用,特别是用于控制电驱动器的输入电压。仿真结果表明了基本控制律的有效性。

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