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

作者:Steven DiGregorio, Laurie Burnham, Bruce H. King · 发表于:Solar Energy · 年份:2025 · DOI:10.1016/j.solener.2025.113916 · 被引用次数:3 · 研究领域:Integrated Circuits and Semiconductor Failure Analysis、Electrical Fault Detection and Protection、Electrical Contact Performance and Analysis

• Connectors are a major failure point in rooftop PV systems, impacting reliability. • Higher operating currents correlate with increased resistance and failure rates. • Common installation errors include loose nuts and improper seating of connectors. • Field data analysis reveals significant differences in performance between models. • Pin/socket contact engagement length is identified as a critical variable. 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...