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Line loss minimization in radial distribution system using multiple STATCOMs and static capacitors

机译:使用多种Statcoms和静态电容的径向分布系统中的线路损耗最小化

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Recently, distribution networks based smart grid have gained much attention due to the availability of installing hybrid power generators in addition to the merits of installing FACTS (Flexible AC Transmission System) equipments in order to control its node voltages and the power flow. This paper presents a new technique for achieving line loss minimization in radial distribution system using multiple Static Synchronous Compensators (STATCOMs) and Static Capacitors (SCs). The proposed technique depends on injecting controlled reactive currents at certain nodes in the system in order to minimize the total line loss. The injected reactive currents compensate the reactive currents required by the inductive loads supplied from the system and hence reduce the feeders currents and the total line loss in the distribution system. The optimal number of the installed static capacitor should be considered in order to further reduce the total line loss. Therefore, the relation between the input number of static capacitors and the reactive current line loss in conjunction with the reactive current control by STATCOMs is derived. The effectiveness of the proposed control scheme has been verified experimentally using a laboratory prototype system.
机译:最近,基于分发网络的智能电网由于安装混合发电机的可用性以及安装事实(灵活的AC传输系统)设备而安装混合动力发电机,以便控制其节点电压和电源。本文介绍了一种新技术,用于使用多个静态同步补偿器(Statcoms)和静态电容器(SCS)实现径向分布系统中的线路损耗最小化。所提出的技术取决于在系统中的某些节点处注入控制的无功电流,以便最小化总线损耗。注入的无反应电流补偿了从系统提供的电感负载所需的反应电流,因此降低了馈线电流和分配系统的总线损耗。应考虑安装的静电电容的最佳数量,以进一步降低总线损耗。因此,推导了静态电容器输入数与反应电流线损耗与通过统计组织的反应电流控制之间的关系。所提出的控制方案的有效性已经使用实验室原型系统进行了实验验证。

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