太阳能光伏系统故障分析

Somila Hashunao, R. Mehta
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引用次数: 2

摘要

由于人口分散、道路和通信连通性差以及地形复杂等多种因素,偏远农村电气化电网的扩展一直是一项挑战。此外,由于他们的生计一般依赖于小规模农业,扩大电网用于房屋照明,对供电机构来说,基本必需品是不经济的。为了满足这些偏远地区的需要,通过现有的自然资源在当地发电被认为是更可行的。因此,关注光伏(PV)系统、小水电系统和其他可再生资源正在出现,以弥补这一差距。为了提高发电的效率和可靠性,对系统进行各种故障保护是至关重要的。光伏系统由直流和交流两级发电组成,两级都有不同类型的故障,由于暴露在多种环境或电气故障中,这些故障不易检测。传统的故障保护方法使用熔断器或断路器与光伏组件串联。由于熔断器的限流特性和光伏阵列的非线性输出特性,光伏阵列中存在一些无法检测到的故障。因此,本文旨在对太阳能光伏(SPV)阵列进行故障分析。本文讨论了各种故障检测算法和技术的文献,对光伏阵列进行了线对线(L-L)、线对地(L-G)、开路和部分遮阳等故障检测的建模和仿真,并比较了它们的输出特性。
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Fault Analysis of Solar Photovoltaic System
Extension of grid for remote rural electrification has been a challenge due to multiple factors including scattered population, poor road and communication connectivity and difficult terrain. Moreover, since their livelihoods are generally dependent upon small-scale farming, extension of grid for house lighting, basic necessity is uneconomical for the power supply agencies. To meet the need of such remote areas generating power locally through the available natural resources is considered more feasible. Hence, focus on Photovoltaic (PV) system, small hydropower system and other renewable resources are emerging to bridge the gap. In order to improve the efficiency and reliability of the power generation, protection of the system from different fault is of critical importance. PV systems consist of power generation in DC and AC stage and both suffer from different kinds of faults that is not easily detected since it is exposed to many kinds of fault that could be environmental or electrical. A conventional fault protection method uses fuses or circuit breakers in series with PV components. Some faults in PV arrays remain undetected due to its current-limiting property of the fuses and non-linear output characteristics of PV arrays. Therefore, this paper aims to develop a fault analysis in solar photovoltaic (SPV) arrays. In this paper literature on various fault detection algorithm and techniques have been discuss, PV array has been modelled and simulated for fault detection such as line to line (L-L), line to ground (L-G), open circuit and partial shading and their output characteristic has been compare.
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