基于模型预测控制的三级微网逆变器优化算法

Xuemei Zheng, Haodong Li, Xin Chen, Min Zhu
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引用次数: 0

摘要

大多数微网逆变器都是基于PI的电压电流双环控制结构来实现控制目标,但控制器参数整定复杂,动态响应速度慢。本文采用预测模型控制(MPC)取代传统的电压电流双环调制,提高了t型三电平逆变器的动态响应速度和参数整定能力。同时,针对t型三电平逆变器MPC算法在线计算的复杂性,提出了一种优化算法,并提前消除了冗余矢量,提高了MPC速度,改善了MG逆变器输出波形的总谐波失真(THD)。
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Three-level microgrid inverter optimization algorithm based on model prediction control
Most microgrid (MG) inverters are based on the voltage and current double loop control structure of PI to achieve control objectives, but the controller parameter setting is complex and the dynamic response speed is slow. In this paper, the predictive model control (MPC) is used to replace the traditional voltage and current double loop modulation for T-type three-level inverter to improve the dynamic response speed and parameter setting. At the same time, aiming at the complexity of online calculation of MPC algorithm of T-type three-level inverter, an optimized algorithm is proposed and the redundant vectors are eliminated in advance, the speed of MPC is increased and improve the total harmonic distortion (THD) of MG inverter output waveform.
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