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Minimizing static VAR compensator capacitor size by using SMC and ASRFC controllers in smart grid with connected EV charger

机译:通过在带有连接的EV充电器的智能电网中使用SMC和ASRFC控制器,最大程度地减少静态VAR补偿器电容器的尺寸

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Electric Vehicles (EVs) play a pivotal role in reducing the emissions of greenhouse gases in the world. Currently demand for EVs has abruptly increased for transportation and other applications. Using more EVs causes an increasing load on the power system. Random EV charging yields voltage distortion, which results in an unbalanced grid. In a distributed system, the connection of EVs to the grid may diminish the power factor, which increases the apparent power loss. The Static VAR Compensator (SVC), which is a FACTS device, is applied to the power system to compensate the voltage distortions and apparent power loss. In this paper, two controlling methods are contemplated and tested in a SVC to reduce the apparent power loss and minimize the capacitor size of the SVC in comparison with the conventional control method in a SVC. Proposed methods are also compared with the conventional control method used for SVC. The Slide Mode Controller (SMC) and Asymmetric Synchronous Reference Frame Controller (ASRFC) with a Harmonic Voltage Compensator (HVC) are separately applied in the grid. This paper presents usage of SMC and ASRFC methods for decreasing size of capacitor and value of apparent power loss through computer simulations of a 22.9-kV grid. With application of new controllers, apparent power loss of grid will be reduced as compared with conventional method of SVC controller. Moreover, the size of SVC capacitor can also be reduced.
机译:电动汽车(EV)在减少全球温室气体排放中起着关键作用。当前,在运输和其他应用中对电动汽车的需求突然增加。使用更多的电动汽车会增加电力系统的负荷。随机EV充电会产生电压失真,从而导致电网不平衡。在分布式系统中,电动汽车与电网的连接可能会降低功率因数,从而增加视在功率损耗。 FACTS器件的静态VAR补偿器(SVC)用于电源系统,以补偿电压失真和视在功率损耗。在本文中,与SVC中的传统控制方法相比,在SVC中考虑并测试了两种控制方法,以减少视在功率损耗并最小化SVC的电容器尺寸。提议的方法也与用于SVC的常规控制方法进行了比较。带有谐波电压补偿器(HVC)的滑模控制器(SMC)和非对称同步参考框架控制器(ASRFC)分别应用在电网中。本文通过22.9 kV电网的计算机仿真,介绍了SMC和ASRFC方法在减小电容器尺寸和视在功率损耗值方面的用法。与传统的SVC控制器相比,新控制器的应用将减少电网的视在功率损耗。此外,还可以减小SVC电容器的尺寸。

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