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Optimal allocation of distributed reactive power compensation for low voltage distribution network considering pump loads’ characteristics

机译:考虑泵负载特性的低压配电网分布式无功补偿的最优分配

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Aimed at the problem that voltage at the end of feeder lines is always too low to start up pump loads in low-voltage distribution network (LVDN) mainly composed of agriculture loads of oxygen pumps and water pumps, a distributed reactive power compensation optimal allocation model of LVDN including pump loads characteristics is proposed. In this model, the objective function includes both the investment cost of the compensation device and the economic benefits of reducing power loss of LVDN, and various constraints of LVDN in the condition of normal operation and startup of pump loads are included in the constraints. A sigmoid function is used to approximate the discontinuous sign function in the objective function, and a nonlinear penalty function which has relative large curvature near the discrete value is used to address the discrete variables characteristics of reactive power compensation capacity, then the primal-dual interior-point algorithm is used to solve the optimization model. Numerical results of an actual LVDN show that the obtained optimal allocation scheme of the method can improve the voltage quality of distribution network, ensure the normal startup of pump loads, and decrease the power loss of LVDN effectively.
机译:针对馈线末端的电压总是过低而无法启动低压配电网(LVDN)中的泵负载的问题,该配电网主要由氧气泵和水泵的农业负载组成,它是一种分布式无功补偿最优分配模型提出了包括泵负载特性在内的LVDN模型。在该模型中,目标函数既包括补偿装置的投资成本,又包括降低LVDN功率损耗的经济效益,并且在正常运行和泵负载启动条件下,LVDN的各种约束都包括在内。在目标函数中使用S形函数逼近不连续符号函数,在离散值附近具有相对较大曲率的非线性惩罚函数用于解决无功补偿容量的离散变量特征,然后是原始对偶内部点算法用于求解优化模型。实际LVDN的数值结果表明,所获得的最优分配方案可以改善配电网的电压质量,确保泵负载的正常启动,并有效降低LVDN的功率损耗。

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