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光伏发电技术 ★ 5.0

6276个屋顶光伏系统采集连接器的快速表征与失效分析

Rapid characterization and failure analysis of 6276 rooftop-harvested photovoltaic connectors

作者 Steven J.Di Gregori · Laurie Burnha · Bruce H.Kin
期刊 Solar Energy
出版日期 2025年1月
卷/期 第 301 卷
技术分类 光伏发电技术
相关度评分 ★★★★★ 5.0 / 5.0
关键词 Connectors are a major failure point in rooftop PV systems impacting reliability.
语言:

中文摘要

摘要 光伏(PV)连接器用于将光伏组件串联连接,并将光伏组串并联连接,近年来被 increasingly 认识为导致光伏系统故障的主要因素以及多起火灾事故的源头。然而,关于连接器故障率和故障类型的公开数据极为匮乏,这主要归因于相关数据的专有性质以及开展全面分析所需的技术要求。本研究是首次针对大量采集的光伏连接器进行的大规模调查,数据集包含来自美国各地住宅屋顶太阳能系统的6276个连接器。本研究取得两方面成果:1)我们建立了一种适用于大规模采集连接器的快速表征方法,该方法结合了目视检查、电阻测量和X射线成像技术;2)通过所提出的快速处理方法,我们得以对由单一屋顶安装商提供的多种型号连接器群体进行分析,揭示了不同品牌和型号连接器的故障统计特征,并获得了有关安装实践、运行电流以及内部元件位移等方面的深入认识。本研究识别出若干常见的失效模式,这些结果可为未来光伏连接器设计标准的制定以及运维实践提供参考,从而最终提升这一关键光伏基础设施组件的可靠性。

English Abstract

Abstract Photovoltaic (PV) connectors, which link modules in series and connect PV strings in parallel, have increasingly been recognized as a primary contributor to PV system failures and a source of numerous fire incidents. However, publicly available data on the rates and types of connector failures are scarce, primarily due to the proprietary nature of the information and the need for comprehensive analysis. This study represents the first large-scale investigation of harvested PV connectors, drawing from a dataset of 6276 connectors from residential rooftop solar systems across the United States. The outcome of this work is twofold: 1) we have established a rapid characterization method for large populations of harvested connectors, incorporating visual inspection, resistance measurements, and X-ray imaging; and 2) the analysis made possible by our rapid-processing method has revealed, for a population of connector models provided by a single rooftop installer, failure statistics and insights for various connector makes and models, installation practices, operating currents, and internal component displacements. This research identifies common failure modes that could be considered in future connector designs standards, and operations and maintenance practices, to ultimately improve the reliability of this vital component of PV infrastructure.
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SunView 深度解读

该连接器失效分析研究对阳光电源SG系列光伏逆变器及iSolarCloud智慧运维平台具有重要价值。研究揭示的连接器失效模式(接触电阻增大、内部位移)可导致系统火灾风险,这为我们的预测性维护算法提供了关键数据支撑。建议将连接器热成像监测、电阻异常检测集成到iSolarCloud平台,通过IV曲线分析识别串联连接异常。同时可优化1500V高压系统的连接器选型标准,在EPC项目中强化安装规范,降低户用光伏系统的长期运维风险,提升系统25年全生命周期可靠性。