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Grid-connected PV virtual instrument system (GCPV-VIS) for detecting photovoltaic failure

机译:用于检测光伏故障的并网光伏虚拟仪器系统(GCPV-VIS)

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This paper presents a design and development of a Grid-Connected Photo Voltaic Virtual Instrumentation System (GCPV-VIS) which is intended to facilitate monitoring and failure detection of a grid-connected photovoltaic plant using statistical methods. The approach has been validated using an experimental database of environment and electrical parameters from a 1.98 kip plant installed at the University of Huddersfield, United Kingdom. There are few instances of statistical tools being deployed in the analysis of PV measured data. The main focus of this research is, therefore, to devise a Virtual Instrument capable of simulating theoretical performances of PV systems and deploying statistical analysis of PV real-time data. The fault detection is based on the comparison between measured and theoretical output power using t-test statistical analysis. The obtained results indicate that the proposed method can detect the faults of the grid-connected PV system, and can be used for continuous monitoring of PV system status.
机译:本文介绍了并网光伏虚拟仪器系统(GCPV-VIS)的设计和开发,该系统旨在利用统计方法促进对并网光伏电站的监视和故障检测。该方法已使用来自英国哈德斯菲尔德大学安装的1.98基普工厂的环境和电参数实验数据库进行了验证。在PV测量数据的分析中,很少部署统计工具。因此,本研究的主要重点是设计一种虚拟仪器,该虚拟仪器能够模拟光伏系统的理论性能并部署光伏实时数据的统计分析。故障检测基于使用t检验统计分析的实测输出功率与理论输出功率之间的比较。所得结果表明,该方法可以检测并网光伏系统的故障,可用于光伏系统状态的连续监测。

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