Computational Design for Overvoltage Protection of Photovoltaic Inverters, based on Metal Oxide Varistors

F. Crisovan, F. Frigura-Iliasa, A. Simo, P. Andea, S. Musuroi
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引用次数: 0

Abstract

Protection equipment based on metal oxide varistors is the most common solution today in the field of low voltage surge arrester applications. All ZnO based varistors are power electronic devices made of n-type semiconductor polycrystalline ceramics, having a high degree of non-linearity of current-voltage dependence. This paper presents an original algorithm applied for dimensioning low voltage varistors, used to protect the inverters located in photovoltaic plants. The algorithm consists in 3 steps, one for computing the height corresponding to the desired voltage, another for the determination of the diameter corresponding to a certain energy/volume absorption capacity, and, a third one which is a sort of safety test for conformity.
基于金属氧化物压敏电阻的光伏逆变器过电压保护计算设计
基于金属氧化物压敏电阻的保护设备是当今低压避雷器应用领域最常见的解决方案。所有基于ZnO的压敏电阻都是由n型半导体多晶陶瓷制成的电力电子器件,具有高度的非线性电流-电压依赖性。本文提出了一种新颖的用于光伏电站逆变器保护的低压压敏电阻尺寸确定算法。该算法分为3步,第一步是计算所需电压对应的高度,第二步是确定相应的能量/体积吸收能力的直径,第三步是一种一致性的安全测试。
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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