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An electronic curve tracing system for evaluating the impact of cloud shadow movement on PV panels and microinverters

机译:一种用于评估云阴影运动对PV面板和微逆变器影响的电子曲线跟踪系统

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It is well known that cloud shadows cause rapid variations in PV output. Ramp time between full power and shadowed power (i.e., approximately 30% of full power) is typically about five seconds. This paper describes a PV curve tracing system, designed and built at a university, that sweeps the current-voltage curve of a 130W test panel pair twice every five seconds to find the true maximum power output. Simultaneously, the testing system takes DC-side measurements on a nearby 190W panel connected to 240Vac through a commercially-available microinverter. These data are then interpolated off-line using cubic splines to produce accurate estimates of maximum power output at GPS time-stamped one second intervals. It is shown that the microinverter follows the maximum power point very well during rapid cloud shadow movements.
机译:众所周知,云阴影导致光伏输出的快速变化。全功率和阴影电源之间的斜坡时间(即,大约30%的全功率)通常约为五秒钟。本文介绍了一个PV曲线追踪系统,在大学设计和建造,每隔五秒钟扫过130W测试面板对的电流电压曲线,以找到真正的最大功率输出。同时,测试系统通过商业可用的微逆变器在附近的190W面板上进行DC侧测量。然后使用立方样条界面内插的这些数据,以产生GPS在GPS时的最大功率输出的准确估计时间戳一秒间隔。结果表明,在快速云阴影运动期间,微内转换器遵循最大功率点。

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