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On the optimal reactive power control for grid-connected photovoltaic distributed generation systems

机译:并网光伏分布式发电系统的最优无功控制

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The increasing deployment of distributed generation (DG) such as photovoltaic panels (PV) connected to low-voltage (LV) grids is becoming a common trend in urban areas. The advances of information and communication technology (ICT) facilitates the collaborative operation of DG systems to achieve collective benefits. The fusion of these two trends creates a new scenario where reactive power control methods can offer additional features and benefits beyond the conventional voltage regulation provided by the droop method. Taking advantage of this new scenario, this paper formulates the application of reactive power control as an optimization problem where simple and ideal settings are imposed by design in order to facilitate the exploration search as well as to avoid over-constraining the optimization space. By appropriately using the reactive power capacity of inverters, the desired collective benefit is to minimize power losses while individual voltages at each inverter should be kept within the statutory limits. The simulated solution of the optimization problem is applied to a real-inspired PV-LV grid subject to an over-voltage situation, which may typically occur during periods of high production but low consumption. Simulation results reveal unexpected optimal settings for reactive power control set-points at each inverter, which calls for a final discussion to review the applicability of the optimization approach.
机译:连接到低压(LV)电网的光伏发电板(PV)等分布式发电(DG)的部署越来越多,这已成为城市地区的普遍趋势。信息和通信技术(ICT)的进步促进了DG系统的协作操作,以实现集体利益。这两种趋势的融合创造了一个新的场景,其中无功功率控制方法可以提供超越下垂方法提供的常规电压调节功能的其他功能和优势。利用这种新情况,本文将无功功率控制的应用公式化为一种优化问题,在该问题中,设计施加了简单而理想的设置,以便于探索性搜索并避免了对优化空间的过度约束。通过适当地使用逆变器的无功功率容量,所需的集体利益是将功率损耗降至最低,同时应将每个逆变器上的各个电压保持在法定范围内。优化问题的模拟解决方案适用于受过电压影响的真实启发式PV-LV电网,该情况通常可能发生在高产量但低消耗的时间段。仿真结果显示了每个逆变器无功功率控制设定点的出乎意料的最佳设置,这需要进行最后的讨论以审查优化方法的适用性。

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