An improved model predictive controller for highly reliable grid connected photovoltaic multilevel inverters

M. Aly, E. Ahmed, M. Shoyama
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引用次数: 11

Abstract

Multilevel Inverters play key role in grid integration of photovoltaic (PV) systems. Although power semiconductor devices in multilevel inverters represent the most expensive and vulnerable parts according to the recent reliability surveys. Thermal stresses in power semiconductor devices represent the main cause of their failures. Therefore, improved controllers with lower thermal stresses are highly demanded. Conventional finite control set model predictive control (MPC) utilizes a high sampling rate to select the optimum switching state from all possible states. Consequently, high power losses and high thermal stresses are produced in this type. This paper introduces an improved model predictive controller (MPC) for preserving high reliability for grid connected single phase full bridge five level T-type inverter. The proposed controller selects the optimum switching sequence to drive the inverter from a set of switching sequences with an optimized switching transitions. The proposed MPC features constant switching frequency with minimized switching transitions of power devices and voltage balance of DC-link capacitors. The results of the designed and implemented case study are presented to validate the superiority of the proposed controller.
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高可靠并网光伏多电平逆变器的改进模型预测控制器
多电平逆变器在光伏系统并网中起着关键作用。尽管根据最近的可靠性调查,功率半导体器件在多电平逆变器中是最昂贵和最脆弱的部件。功率半导体器件中的热应力是其失效的主要原因。因此,需要具有较低热应力的改进控制器。传统的有限控制集模型预测控制(MPC)利用高采样率从所有可能的状态中选择最优开关状态。因此,在这种类型中产生高功率损耗和高热应力。为保证并网单相全桥五电平t型逆变器的高可靠性,提出了一种改进的模型预测控制器(MPC)。该控制器从一组具有优化开关转换的开关序列中选择最优开关序列驱动逆变器。所提出的MPC具有恒定的开关频率,使功率器件的开关跃迁最小化和直流链路电容器的电压平衡。设计和实现的实例研究结果验证了所提控制器的优越性。
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