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Measurement of dc Arc-flash Incident Energy in Large-Scale Photovoltaic Plants: A Basis for Standardization

机译:大型光伏电站直流电弧闪光入射能量的测量:标准化的基础

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The deployment of high-power dc equipment is increasing in solar photovoltaic (PV) plants, but very few studies have quantified dc arc-flash risks. Currently, PV plant owners and operators rely on theoretical, simplified models, such as those in NFPA-70E and other publications for the assessment of risk associated with dc arc-flash. This paper presents an overview of arc-flash risks in a PV system based on a series of field experiments based on IEEE-1584 in two large-scale groundmounted PV plants. The experiments include various high-power dc equipment of a PV plant such as central inverters, combiner boxes, recombiner boxes, string inverters, and multiple configurations of electrodes in a 20-inch calibration cube. The study reveals the none of the available dc arc-flash models are applicable for a PV plant. This work is an important first step towards developing an improved model that more accurately assesses dc arc-flash risk in a PV plant.
机译:在太阳能光伏(PV)工厂中,大功率直流设备的部署正在增加,但是很少有研究量化直流电弧闪光的风险。当前,光伏电站所有者和运营商依靠理论上简化的模型(例如NFPA-70E和其他出版物中的模型)来评估与直流电弧闪光相关的风险。本文基于在两个大型地面光伏电站中基于IEEE-1584的一系列现场实验,概述了光伏系统中的弧闪风险。实验包括光伏电站的各种高功率直流设备,例如中央逆变器,汇流箱,重组箱,串式逆变器以及20英寸校准立方体中的多种电极配置。研究表明,没有可用的直流电弧闪光模型适用于光伏电站。这项工作是开发改进模型的重要的第一步,该模型可以更准确地评估光伏电站中的直流电弧闪光风险。

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