A novel constant frequency sliding mode control of DC-DC converters

S. Arvind, R. Akshay, A. Sreedevi
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引用次数: 4

Abstract

Sliding Mode Control (SMC) is a robust and easy to design control law, which can be applied to linear and nonlinear systems. It has been of great research interest for applications in power electronics and motor drives. Conventional/First order sliding mode suffers from chattering of the control input, which when used for DC-DC Converters, results in variable switching frequency of the power switch. This will lead to more switching losses and also makes the design of the converter passives difficult. This research work presents a modified version of SMC, called Constant Frequency SMC (CFSMC), which ensures that DC-DC Converters operate at constant switching frequency and yet remain as robust and easy to implement as the conventional SMC. The theory is developed and verified through simulations for Boost, Buck-Boost, SEPIC and Cuk Converters in MATLAB/SIMULINK.
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一种新型的DC-DC变换器恒频滑模控制方法
滑模控制是一种鲁棒性好、易于设计的控制律,适用于线性和非线性系统。它在电力电子和电机驱动领域的应用具有重要的研究意义。常规/一阶滑模受控制输入的抖振影响,当用于DC-DC变换器时,导致电源开关的开关频率可变。这将导致更大的开关损耗,也给变换器无源设计带来困难。本研究提出了一种改进的SMC,称为恒频SMC (CFSMC),它确保DC-DC转换器在恒定的开关频率下工作,同时保持与传统SMC一样的鲁棒性和易于实现。在MATLAB/SIMULINK中对Boost、Buck-Boost、SEPIC和Cuk转换器进行了仿真,验证了该理论的正确性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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