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Dynamic Real-Time I–V Curve Measurement System for Indoor/Outdoor Characterization of Photovoltaic Cells and Modules

机译:用于光伏电池和组件室内/室外表征的动态实时 IV 曲线测量系统

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摘要

A test method that measures the current-voltage curve of a photovoltaic (PV) cell or module in real time is presented as a means of characterizing and understanding the inherently variable nature of performance under field conditions. Temperature, incident light intensity, orientation to the light source, incident spectrum, the uniformity of illumination, as well as a diverse set of failure mechanisms, both catastrophic and otherwise, have characteristic effects on the curve. Seeing the curve change dynamically with these influences allows visual correlation to real-time events. With a live curve generated by performing forward and reversed bias sweeps repeatedly, the effect of parasitic inductance and bias sweep rate on the measurement can be demonstrated directly. This technique also ensures that the device junction is held in quasi-thermal equilibrium during the measurement. The relative alignment of optics in a concentrating photovoltaic module is analyzed to demonstrate the value of the live curve.
机译:提出了一种实时测量光伏(PV)电池或模块电流-电压曲线的测试方法,作为表征和理解现场条件下性能固有变化特性的一种手段。温度,入射光强度,光源的方向,入射光谱,照明的均匀性,以及各种灾难性和其他形式的故障机制,都会对曲线产生影响。看到曲线在这些影响下动态变化,可以与实时事件进行视觉关联。通过反复执行正向和反向偏置扫描产生的实时曲线,可以直接证明寄生电感和偏置扫描速率对测量的影响。此技术还可以确保在测量期间将器件结保持在准热平衡状态。分析了聚光光伏模块中光学器件的相对对准,以证明实时曲线的值。

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