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An Improved PWM-Based Sliding-Mode Controller for a DC–DC Cascade Boost Converter

机译:用于DC-DC级联升压转换器的基于PWM的改进的滑模控制器

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This brief presents an improved pulse-width-modulation-based sliding-mode (SM) controller for the regulation of a 2-stage dc-dc cascade boost converter. The main drawback of the existing SM controller is that its use in the regulation of the high-order dc-dc converter results in a trade-off between the overshoot and speed of the transient output response. In order to overcome this problem, the sliding surface of the proposed SM controller is designed such that the integral action in the resulting equivalent control signal is based on the normalized output voltage error of the converter. Also, the derivative of the integrand is bounded by a user defined constant. The derivation of equivalent control signal of the proposed SM controller and the stability analysis of the closed-loop system are presented. Finally, an experimental comparative study involving the proposed and existing SM controllers is provided.
机译:本简介提出了一种改进的基于脉冲宽度调制的滑模(SM)控制器,用于调节2级dc-dc级联升压转换器。现有SM控制器的主要缺点在于,其在高阶dc-dc转换器的调节中的使用会导致瞬态输出响应的过冲和速度之间进行权衡。为了克服该问题,设计所提出的SM控制器的滑动表面,使得所得等效控制信号中的积分作用基于转换器的归一化输出电压误差。同样,被积数的导数由用户定义的常数限制。给出了所提出的SM控制器的等效控制信号的推导和闭环系统的稳定性分析。最后,提供了涉及所提议的和现有的SM控制器的实验比较研究。

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