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An Intelligent-Based Fault-Tolerant System for Solar-Fed Cascaded Multilevel Inverters

机译:太阳能级联多电平逆变器的基于智能的容错系统

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This paper presents an intelligent-based fault-tolerant system for a solar photovoltaic (PV) inverter. Artificial neural network based controller is used to monitor, detect, and diagnose the faults in solar PV panels, battery, semiconductor switches, and inverters. The cascaded multilevel inverter is connected across the combination of solar PV panel and battery for dc–ac conversion. The major advantage of the proposed topology is that it can deliver power from source to the load even under fault and partial shaded conditions. The paper also reviews on various faults in the solar PV energy conversion process and provides suitable solutions for each circumstance. Simulations are undertaken in MATLAB 2016a/Simulink and experimental investigation is carried out for a 3 kWp solar PV system. The results have proven that the system is capable to deliver power in spite of faulty environments. The comparison and discussion of the results were made to show the effectiveness of the proposed system.
机译:本文提出了一种基于智能的太阳能光伏(PV)逆变器容错系统。基于人工神经网络的控制器用于监视,检测和诊断太阳能光伏板,电池,半导体开关和逆变器中的故障。级联的多电平逆变器连接在太阳能光伏板和电池的组合上,以进行dc-ac转换。所提出的拓扑的主要优点是,即使在故障和部分阴影条件下,它也可以从电源向负载供电。本文还回顾了太阳能光伏能源转换过程中的各种故障,并针对每种情况提供了合适的解决方案。在MATLAB 2016a / Simulink中进行了仿真,并针对3 kWp太阳能光伏系统进行了实验研究。结果证明,即使出现故障环境,该系统也能够提供电源。对结果进行了比较和讨论,以证明所提出系统的有效性。

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