A Random Switching Frequency De-Re- Coupling Current MPC Method for Single-Phase MC

Yening Sun, Yao Wei
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引用次数: 0

Abstract

Model predictive control (MPC) is a highlighted control method for power electronic realm. For Matrix Converter (MC) with bidirectional switches and difficulty model, MPC has a complex structure and control process. A random switching frequency de-re-coupling current MPC method is proposed in this paper for a single-phase MC. A voltage function is obtained by the simplified and decoupled discrete-time model of MC, and a random switching frequency generating strategy is inserted to modulate function and to improve harmonic of MPC variable switching frequency. The principle effectiveness and advantages of the proposed method such as THD, settling times and static errors are verified by simulation results comparing with the conventional MPC and de-recoupling fixed switching frequency current MPC methods.
一种用于单相MC的随机开关频率去重耦合电流MPC方法
模型预测控制(MPC)是电力电子领域的一个热点控制方法。对于具有双向开关和难度模型的矩阵变换器,其结构复杂,控制过程复杂。本文提出了一种随机开关频率解耦电流MPC方法,通过简化和解耦的MC离散时间模型得到电压函数,并插入随机开关频率产生策略对函数进行调制,改善MPC变开关频率的谐波。通过与传统MPC方法和解耦固定开关频率电流MPC方法的比较,仿真结果验证了该方法的原理、有效性和在THD、稳定时间、静态误差等方面的优势。
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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