A Fault Tolerant Multilevel Inverter for Off-grid Solar Photovoltaic Application

Haroon Rehman, A. Sarwar, Mohd Tariq, A. Sarwat
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Abstract

Multilevel inverters (MLIs) provide a number of advantages including, modularity, higher efficiency, lower dv/dt stress, and minimal filtering requirements. The number of switching devices and the complexity of control will increase with increasing voltage levels in the conventional MLI. As a result of the higher number of switching devices, there may be an increased chance of failure, which compromises the MLI’s reliability. The goal of current research trends is to increase the reliability of MLIs by using an optimal number of switching devices. It is important to ensure fault tolerance in many industrial applications where continuity of power supply is a key requirement. The fault tolerant (FT) operation of an MLI has, therefore, been the subject of considerable research. This paper proposes a new topology with FT capabilities for solar photovoltaic (PV) application that enhances the reliability of MLIs. The topology has the ability to generate 7-level, and (9-level and 11-level) in normal condition at the output using symmetric and asymmetric source configurations, respectively. Based on simulation results performed within the MATLAB/Simulink environment, the feasibility of the proposed FT MLI is demonstrated for different switch faults.
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离网太阳能光伏应用的容错多电平逆变器
多电平逆变器(mli)具有许多优点,包括模块化、更高的效率、更低的dv/dt应力和最小的滤波要求。在传统的MLI中,随着电压等级的增加,开关器件的数量和控制的复杂性也会增加。由于交换设备数量的增加,可能会增加故障的机会,这损害了MLI的可靠性。当前研究趋势的目标是通过使用最优数量的开关器件来提高mli的可靠性。在许多工业应用中,确保电源的连续性是一个关键要求,因此确保容错是很重要的。因此,MLI的容错操作一直是大量研究的主题。本文提出了一种新的具有傅立叶变换能力的拓扑结构,用于太阳能光伏(PV)应用,提高了mli的可靠性。该拓扑能够在正常条件下分别使用对称和非对称源配置在输出处生成7级和(9级和11级)。基于MATLAB/Simulink环境下的仿真结果,验证了该方法在不同开关故障情况下的可行性。
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