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Optimal Voltage Control Using an Equivalent Model of a Low-Voltage Network Accommodating Inverter-Interfaced Distributed Generators

机译:使用适应逆变器接口的分布式发电机的低压网络的等效模型进行最优电压控制

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The penetration of inverter-based distributed generators (DGs), which can control their reactive power outputs, has increased for low-voltage (LV) systems. The power outputs of DGs affect the voltage and power flow of both LV and medium-voltage (MV) systems that are connected to the LV system. Therefore, the effects of DGs should be considered in the volt/var optimization (VVO) problem of LV and MV systems. However, it is inefficient to utilize a detailed LV system model in the VVO problem because the size of the VVO problem is increased owing to the detailed LV system models. Therefore, in order to formulate and solve the VVO problem in an efficient way, in this paper, a new equivalent model for an LV system including inverter-based DGs is proposed. The proposed model is developed based on an analytical approach rather than a heuristic-fitting one, and it therefore enables the VVO problem to be solved using a deterministic algorithm (e.g., interior point method). In addition, a method to utilize the proposed model for the VVO problem is presented. In the case study, the results verify that the computational burden to solve the VVO problem is significantly reduced without loss of accuracy by the proposed model.
机译:对于低压(LV)系统,可以控制其无功功率输出的基于逆变器的分布式发电机(DG)的普及率有所提高。 DG的功率输出会影响LV和连接到LV系统的中压(MV)系统的电压和功率流。因此,在低压和中压系统的电压/电压优化(VVO)问题中应考虑DG的影响。但是,在VVO问题中使用详细的LV系统模型效率不高,因为由于详细的LV系统模型,VVO问题的规模增加了。因此,为了有效地制定和解决VVO问题,本文提出了一种基于逆变器的DG的低压系统等效模型。所提出的模型是基于一种分析方法而不是一种启发式拟合方法开发的,因此可以使用确定性算法(例如,内部点方法)解决VVO问题。另外,提出了一种利用提出的模型解决VVO问题的方法。在案例研究中,结果验证了所提出的模型可以显着减少解决VVO问题的计算负担,而不会降低准确性。

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