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A control algorithm of power converters in smart-grids for providing uninterruptible ancillary services

机译:用于提供不间断辅助服务的智能电网电源转换器控制算法

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This paper deals with the use of grid-connected photovoltaic (PV) power plants for supplying the ancillary service of reactive power compensation to the distribution grid. A control strategy has been developed for controlling both real and reactive power exchanged with the distribution network. The paper suggests how the real and reactive power references should be selected in order to maximize the electrical energy generated by PV arrays and to exploit the apparent power of the inverter close to its rated value. The choice suggested for reference signals allows reactive power compensation service also when the solar irradiation is negligible. The control strategy is then applied to a sample grid-connected PV unit, which has been simulated in Simulink environment. Numerical simulations show that, using an adaptive Perturb & Observe algorithm, the maximum power point tracking is achieved in about 2 seconds, both at starting and when the irradiation changes. The inverter is also capable of giving without interruptions the reactive power support to the grid, reducing grid currents and voltage drops along the line respect to the classical configuration where no reactive compensation is present.
机译:本文涉及使用网格连接的光伏(PV)发电厂,供应与配电电网的无功补偿的辅助服务。开发了一种控制策略,用于控制与配电网络交换的实际和无功功率。本文建议如何选择实际和无功功率引用,以最大化PV阵列产生的电能,并利用逆变器的视表位靠近其额定值。当太阳照射可忽略不计时,建议参考信号的选择允许无功功率补偿服务。然后将控制策略应用于样品网格连接的PV单元,其已经在Simulink环境中进行了模拟。数值模拟表明,使用自适应扰动和观察算法,最大功率点跟踪在开始和照射变化时在大约2秒内实现。逆变器还能够在没有中断到电网的无功功率支撑的情况下,减少沿线的电流和电压下降,在不存在无功补偿的情况下。

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