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Reactive power management stretegy for photovoltaic based distributed generators operating under nonuniform conditions

机译:非统一条件下的光伏基于分布式发电机的无功功率管理策略

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Photovoltaic (PV) based distributed generators (DGs) are generally controlled as current source to deliver only active power generated by PV source to the grid. However, reactive power transfer capability of such DGs must be utilized to satisfy load reactive power requirement or to provide reactive power support to the grid. Reactive power management for several such PV based DGs operating in parallel is a challenging task as the available reactive power capacity of each depends on the environmental conditions and may vary continuously. The proposed control strategy considers the effect of environmental conditions on the active power generated by the DGs and accordingly assigns reactive power references for the inverters after computing the available capacity of the inverters. Hence, irrespective of variation in active powers of the DGs, the proposed algorithm not only helps to avoid the overloading of the inverters but also operates all inverters at same apparent power rating to ensure that all inverters are utilized equally. The algorithm is evaluated in terms of its capability to obtain the best solution that gives the least standard deviation of utilization factors of the inverters. Simulation results obtained using MATLAB/Simulink are included to confirm its effectiveness over other algorithms.
机译:基于光伏(PV)的分布式发电机(DGS)通常被控制为电流源,以仅传送由PV源产生的电源产生的电源。然而,必须利用这种DGS的无功动力传递能力来满足负载无功功率要求或向电网提供无功功率支撑。对于并联操作的几个这样的PV基于的无功功率管理是一个具有挑战性的任务,因为各自的可用无功功率容量取决于环境条件,并且可能连续变化。该拟议的控制策略考虑了环境条件对DGS产生的有源功率的影响,因此在计算逆变器的可用容量之后为逆变器分配反应功率参考。因此,不管DGS的有源功率的变化,所提出的算法不仅有助于避免逆变器的过载,而且还可以在相同的表观额定功率下操作所有逆变器,以确保所有逆变器同样地使用所有逆变器。根据其能力评估算法,以获得提供逆变器利用因子的最低标准偏差的最佳解决方案。包括使用MATLAB / SIMULINK获得的模拟结果以确认其在其他算法上的有效性。

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