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State of charge preventive control of storage device to stabilize VSI-based microgrid after islanding occurrence using ANN-based control

机译:使用基于ANN的控制在孤岛发生后稳定基于VSI的微电网的存储设备的防止充电状态控制

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摘要

This paper presents an effective method to control the state of charge (SOC) of energy storage system (ESS) installed in a microgrid (MG). Considering voltage and frequency variations after islanding occurrence and based on the stability criteria, MG pre-islanding conditions are divided into secure and insecure classes. It is shown that insecure MG can become secure, if appropriate value for SOC of the ESS is chosen in different conditions of the MG. To select the most important variables of MG, which can estimate proper values of the SOC, a feature selection procedure known as RELIEF is used in this paper. Among all the MG variables, critical ones are selected. Using them, appropriate value of the SOC can be calculated for different conditions of the MG. This approach is economic because it does not change the result of optimal power flow (OPF). In some conditions, the proper control of SOC cannot solely make the MG secure. In these conditions, DGs generated power should be also changed to make the MG secure. This condition leads to a violation from OPF solution and increases the cost of operation. The results demonstrate the effectiveness of the proposed method in comparison with other methods.
机译:本文提出了一种有效的方法来控制安装在微电网(MG)中的储能系统(ESS)的充电状态(SOC)。考虑到孤岛发生后的电压和频率变化,并基于稳定性标准,MG预孤岛条件分为安全和不安全两类。结果表明,如果在MG的不同条件下选择适合ESS SOC的值,则不安全的MG可以变得安全。为了选择可以估计SOC适当值的MG最重要的变量,本文使用了一种称为RELIEF的特征选择程序。在所有MG变量中,选择关键变量。使用它们,可以为MG的不同条件计算出适当的SOC值。这种方法很经济,因为它不会更改最佳功率流(OPF)的结果。在某些情况下,对SOC的适当控制不能仅使MG安全。在这种情况下,DG的发电功率也应更改,以确保MG安全。这种情况会导致违反OPF解决方案并增加运营成本。结果证明了与其他方法相比,该方法的有效性。

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