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Modeling and optimal placement of voltage regulator for a radial system

机译:径向系统的电压调节器建模和最佳放置

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Voltage regulation is an important subject in electrical distribution system. The voltage drop along primary distribution systems has been a crucial operating problem, especially for lengthy feeders, with a significant load concentration at their ends. As the load on a feeder varies the voltage supplied to every customer will also vary. It is the utilities responsibility to keep the customer voltage within American National Standard Institution (ANSI) standard. In order to satisfy the ANSI standard, the utility must have means of regulating the feeder voltage. In view of this, a model of control system for voltage regulator (VR) is developed and tested. The paper presents modeling of control system for voltage regulator, which is On-Load Tap Changing (OLTC) transformer. The control system model is developed using MiPower software. The model is tested for 12 bus and 70 bus radial distribution systems. Further a case study is done for optimal placement of voltage regulator for the said systems. The Placement of voltage regulator is done with help of a two different algorithms. These algorithms help to find the location and number of voltage regulator required for systems. Finally comparison of two algorithms is done to select best method for the placement of voltage regulator. The voltage profile of the systems are improved and real power losses occurred for the systems with VR are less. The first algorithm gave good results with respect to reduction of losses and economical aspects.
机译:电压调节是配电系统中的重要课题。沿初级配电系统的电压降一直是一个关键的运行问题,尤其是对于较长的馈线,其两端的负载集中很大。随着馈线负载的变化,提供给每个客户的电压也将变化。保持客户电压在美国国家标准机构(ANSI)标准之内是公用事业的责任。为了满足ANSI标准,公用事业公司必须具有调节馈线电压的方法。鉴于此,开发并测试了用于电压调节器(VR)的控制系统模型。本文介绍了稳压器控制系统的建模,该系统是有载分接变换(OLTC)变压器。控制系统模型是使用MiPower软件开发的。该模型已针对12个母线和70个母线径向分配系统进行了测试。进一步进行了案例研究,以为所述系统最佳地放置电压调节器。借助两种不同的算法完成电压调节器的放置。这些算法有助于查找系统所需的稳压器的位置和数量。最后,对两种算法进行了比较,以选择最佳的稳压器放置方法。系统的电压曲线得到改善,具有VR的系统发生的实际功率损耗更少。第一种算法在减少损失和经济方面都给出了良好的结果。

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