Analysis and control of DC-DC Buck converter using average power balance control (APBC)

S. K. Kollimalla, Mahesh Kumar Mishra
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引用次数: 1

Abstract

In this paper, average power balance control (APBC) scheme is designed and analyzed for a buck converter. The proposed scheme consists of two control loops, the fast inner current loop uses sliding mode control (SMC) and outer voltage loop uses the average power balance algorithm (APBA), which contains average power balance equation (APBE) and PI controller. The existence condition of SMC is derived using Lyapunov stability theorem such that the stable tracking performance can be ensured under occurrence of system uncertainties. The proposed APBC scheme is modelled and simulated using MATLAB / SIMULINK. The effectiveness of APBC in terms of voltage tracking, transient response and robustness to uncertainties in parameters are verified by simulation results.
基于平均功率平衡控制(APBC)的DC-DC Buck变换器分析与控制
本文设计并分析了降压变换器的平均功率平衡控制方案。该方案由两个控制环组成,快速内电流环采用滑模控制(SMC),外电压环采用平均功率平衡算法(APBA),该算法包含平均功率平衡方程(APBE)和PI控制器。利用李雅普诺夫稳定性定理,导出了系统最小控制单元的存在条件,从而保证了系统在不确定情况下的稳定跟踪性能。利用MATLAB / SIMULINK对所提出的APBC方案进行了建模和仿真。仿真结果验证了APBC在电压跟踪、暂态响应和参数不确定性鲁棒性方面的有效性。
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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