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Aggregate Ramp Rates of Distributed Photovoltaic Systems in San Diego County

机译:圣地亚哥县分布式光伏系统的总体上升速率

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Aggregate ramp rates of 86 distributed photovoltaic (PV) systems installed in Southern California were analyzed and compared to irradiation measured at five ground stations and estimated from satellite. Irradiation data was converted to power output using a PV performance model to evaluate whether widespread on-line metering and telemetry of PV systems is necessary to track output of distributed generation for resource-adequacy applications. The satellite data were able to closely follow the aggregate power output and detect the timing of the ramps while the five weather stations were not as accurate due to smaller number and non-representative geographical distribution with respect to the PV sites. Over one year, the largest hourly aggregate ramp was a 50% increase based on the Performance Test Conditions (PTC) rating but ramps over 30% of PTC occurred only about once per day. The effects of specific meteorological conditions, such as coastal marine layer clouds and frontal system effects, on occurrence of large ramps were investigated over the area using satellite imagery. Evaporation of morning marine layer clouds caused a disproportionally large amount of up-ramps.
机译:分析了南加州安装的86个分布式光伏(PV)系统的总斜坡率,并将其与在五个地面站测量的辐射进行比较,并根据卫星进行了估算。使用PV性能模型将辐照数据转换为功率输出,以评估是否有必要对PV系统进行广泛的在线计量和遥测以跟踪资源充足的分布式发电的输出。卫星数据能够紧跟总功率输出并检测坡道的时间安排,而五个气象站则由于PV站点数量较少且地理分布不具代表性而不太准确。在一年多的时间内,基于性能测试条件(PTC)的评分,最大的每小时总坡度增加了50%,但超过PTC的30%的坡度每天大约发生一次。使用卫星图像研究了该地区特定气象条件对沿海地区大型坡道发生的影响,例如沿海海洋层云和额叶系统效应。早晨海洋层云的蒸发导致大量的上升坡道。

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