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Impact of centralized photovoltaic systems on utility power factor profile using the wavelet variability model

机译:小波变异模型对集中式光伏系统对公用事业功率因数的影响

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This paper presents the impact of centralized photovoltaic (PV) systems with various power factor (PF) control schemes on the distribution feeder PF profile using the wavelet variability model (WVM). Centralized PV systems are large-scale plants (> 1 MW), deployed at sites of prime solar resource availability and mostly at remote locations. The control strategies are fixed PF and PF schedule which adjusts the PF during day time. The WVM performs geographic smoothing of the irradiance data from a single point sensor across the entire PV plant in order to capture solar variability accurately and its associated interconnection effects on the grid. The IEEE-34 bus system with PV plants integrated close to feeder source, midpoint and end has been used as a case study. The test network contains bus coordinates used to map the feeder to the real world, and thus useful in capturing the locational value of PV systems.
机译:本文使用小波变异性模型(WVM)展示了具有各种功率因数(PF)控制方案的集中式光伏(PV)系统对配电馈线PF轮廓的影响。集中式光伏系统是大型电厂(> 1 MW),部署在太阳能资源充足的地点,且大多位于偏远地区。控制策略是固定的PF和PF计划,可在白天调整PF。 WVM对整个光伏电站中来自单点传感器的辐照数据执行地理平滑处理,以便准确捕获太阳能的可变性及其与电网的关联互连效应。作为案例研究,已将IEEE-34总线系统的光伏电站集成到靠近馈源,中点和末端的位置。测试网络包含用于将馈线映射到现实世界的总线坐标,因此对于捕获PV系统的位置值很有用。

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