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Fault detection algorithm for multiple GCPV array configurations

机译:多种GCPV阵列配置的故障检测算法

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In this paper, a fault detection algorithm for multiple grid-connected photovoltaic (GCPV) array configurations is introduced. For a given set of conditions such as solar irradiance and photovoltaic module temperature, a number of attributes such as power, voltage and current are calculated using a mathematical simulation model. Virtual instrumentation (VI) LabVIEW software is used to monitor the performance of the GCPV system and to simulate the theoretical I-V and P-V curves of the examined system. The fault detection algorithm is evaluated on multiple GCPV array configurations such as series, parallel and series-parallel array configuration. The fault detection algorithm has been validated using 1.98 kWp GCPV system installed at the University of Huddersfield. The results indicates that the algorithm is capable to detect multiple faults in the examined GCPV plant and can therefore be used in large GCPV installations.
机译:本文介绍了一种用于多个并网光伏阵列配置的故障检测算法。对于给定的一组条件(例如太阳辐照度和光伏模块温度),使用数学仿真模型来计算许多属性(例如功率,电压和电流)。虚拟仪器(VI)LabVIEW软件用于监视GCPV系统的性能并模拟所检查系统的理论I-V和P-V曲线。在多个GCPV阵列配置(例如串联,并联和串联-并联阵列配置)上评估故障检测算法。故障检测算法已使用哈德斯菲尔德大学安装的1.98 kWp GCPV系统进行了验证。结果表明,该算法能够检测所检查的GCPV工厂中的多个故障,因此可以在大型GCPV安装中使用。

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