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Stray Current DC Corrosion Blind Spots Inherent to Large PV Systems Fault Detection Mechanisms: Elaboration of a Novel Concept

机译:杂散电流直流腐蚀斑点固有的大型光伏系统故障检测机制:阐述新颖的概念

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This article elaborates on a new issue that should progressively receive attention by Photovoltaic (PV) installation industry and utility management entities. It specifically introduces stray current corrosion blind spots that are inherent to PV systems' grounding and associated DC ground fault detection mechanisms. These blind spots arise as the existing thresholds for DC leakage currents have been based on other issues such as fire or personnel safety. Leakage current may cause accelerated corrosion on PV supporting metallic structures as well as on third party metallic utilities that may be present in the vicinity of PV installations. The impact of DC stray current corrosion is recognized by the stakeholders across the world in the DC traction community and codes and standards have been developed to provide designers and utility companies with a corrosion management strategy that defines a level of corrosion risk which is acceptable across infrastructures. This article outlines the theoretical background that will assist the understanding of stray current corrosion by PV plant developers, designers and owners and raise awareness with the utility Distribution Network Owners.
机译:本文详细阐述了光伏(PV)安装行业和公用事业管理实体逐步接受关注的新问题。它专门引入了PV系统接地和相关的直流接地故障检测机构所固有的杂散电流腐蚀斑点。由于DC泄漏电流的现有阈值基于诸如火灾或人员安全等其他问题,因此出现了这些盲点。漏电流可能导致PV上的加速腐蚀,以及在PV装置附近存在的第三方金属公用事业。 DC杂散电流腐蚀的影响由世界各地的利益攸关方在DC牵引社区中的认可,并制定了代码和标准,为设计师和公用事业公司提供了一种腐蚀管理策略,这些公司定义了跨基础设施可接受的腐蚀风险水平。本文概述了通过光伏工厂开发商,设计师和业主的杂散电流腐蚀的理论背景,并提高与公用事业配送网络所有者的认识。

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