DC-DC降压变换器混合控制器的优化设计

H. Shayeghi, Reza Mohajery, N. Bizon
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引用次数: 0

摘要

世界上的电能应用严重依赖于电力电子转换器。它们广泛应用于各个领域,对高效的电源管理至关重要。由于DC-DC变换器的非线性特性,其输出电压会周期性波动,当电路参数发生变化时,即使是很小的变化,器件也会很敏感。因此,这些变换器的非线性结构和快速动态特性增加了其控制过程的复杂性。本文提出了一种改进的方法来控制传统的DC-DC降压变换器,通过级联的比例积分导数(PID)控制器和一加比例积分器(PI)控制器。利用黏菌优化算法(SMA)实现了控制器参数的优化实现。该机制根据输入电压和输出负载的变化来调节输出电压。以ISTSE指标为目标函数,建议的控制器系数旨在获得闭环系统时域性能指标的最小可能值。然后,通过与广泛使用的PID控制器的比较,证明了所提出的PID(1+PI)控制器的有效性。仿真结果表明,基于sma的PID(1 +PI)控制器在各种工况下的沉降和上升时间减少方面都优于PID控制器。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimal Design of a Hybrid Controller for DC-DC Buck Converter
The world of electrical energy applications heavily relies on power electronic converters. They are found in various fields and are crucial to efficient power management. Due to the nonlinear characteristics of DC-DC converters, the output voltage fluctuates periodically, causing the device to be sensitive to even little changes when the circuit parameters are varied. Consequently, the nonlinear structure and rapid dynamics of these converters add to the complexity of their control process. This paper presents a modified method for controlling the conventional DC-DC buck converter by cascading a Proportional-Integral-Derivative (PID) controller with a One plus Proportional-Integrator (PI) controller. The optimal implementation of the controller parameters is achieved by utilizing the slime mould optimization algorithm (SMA). This mechanism regulates the output voltage in response to changes in the input voltage and output load. With the ISTSE index serving as the objective function, the suggested controller coefficients aim to obtain the lowest possible value for the time- domain performance indexes of the closed-loop system. Then the effectiveness of the proposed PID(1+PI) controller has been shown via comparisons to the widely used PID controller. According to the simulation findings, the SMA-based PID(l+PI) controller outperforms the PID controller in settling and rise time reduction over various operating conditions.
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