基于无源控制的不同负载降压变换器研究

Feng Zhang, Jianguo Li, Gejun Zhu, Rongyuan Hu, Yaping Qu, Yujiang Zhang
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摘要

升压变换器通常采用单闭环或双闭环控制,不同的工作模式和负载在控制和参数上存在差异。本文针对恒阻负载(CRL)、恒功率负载(CPL)、电池负载等不同负载,提出了一种统一的控制方法——基于无源性的控制(PBC)。PBC是一种基于能量耗散原理的非线性控制,对参数干扰和外界干扰具有较强的鲁棒性,并且具有设计简单、实现简单等优点。虽然之前已经进行了很多研究,但本研究考虑了电压和电流相关的功率损耗,并对不同的负载模型进行了比较。详细分析了升压变换器的数学模型、控制原理和控制器设计。此外,文中还给出了基于simulink的不同载荷下的仿真结果和实验验证结果。在不同负载条件下,与PI控制相比,PBC具有更小的电流过冲和电流纹波。
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Passivity-Based Control of Buck-Boost Converter for Different Loads Research
Normally, the buck-boost converter adopts single or double closed-loop control, and there are differences in control and parameters for different working modes and loads. In this study, a unified control method, the passivity-based control (PBC), is applied to a buck-boost converter for different loads, including constant resistance load (CRL), constant power load (CPL), and battery load. The PBC is a nonlinear control based on energy dissipation principle, and it has strong robustness to parameter interference and external disturbance, and it also has the advantages of simple design and simple implementation. Although many research studies have been conducted before, the voltage and current-related power losses are considered, and different load models are also compared in this research. The detailed mathematical model, control principle, and controller design of the buck-boost converter are thoroughly analysed. In addition, SIMULINK-based simulation results and experimental verification results of different loads are also given in the paper. Also, the PBC has smaller current overshot and smaller current ripples compared with PI control in different loads condition.
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