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A coordinated voltage control approach for coordination of OLTC, voltage regulator and DG to regulate voltage in a distribution feeder

机译:协调电压控制方法,用于协调OLTC,电压调节器和DG以调节配电馈线中的电压

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Integration of small-scale electricity generators, known as Distributed Generation (DG), into the distribution networks has become increasingly popular at the present. This tendency together with the falling price of synchronous-type generator has potential to give the DG a better chance in participating in the voltage regulation process together with other devices already available in the system. The voltage control issue turns out to be a very challenging problem for the distribution engineers since existing control coordination schemes would need to be reconsidered to take into account the DG operation. In this paper, we propose a control coordination technique, which is able to utilize the ability of the DG as a voltage regulator, and at the same time minimizes interaction with other active devices, such as On-load Tap Changing Transformer (OLTC) and voltage regulator. The technique has been developed based on the concept of control zone, Line Drop Compensation (LDC), as well as the choice of controller's parameters. Simulations carried out on an Australian system show that the technique is suitable and flexible for any system with multiple regulating devices including DG.
机译:目前,将称为分布式发电(DG)的小型发电机集成到配电网络中变得越来越普遍。这种趋势以及同步型发电机价格的下降都有可能使DG与系统中已有的其他设备一起参与电压调节过程的机会更大。电压控制问题对于配电工程师来说是一个非常具有挑战性的问题,因为需要重新考虑现有的控制协调方案以考虑DG的运行。在本文中,我们提出了一种控制协调技术,该技术能够利用DG作为稳压器的功能,同时最大程度地减少与其他有源设备(例如有载分接变换变压器(OLTC)和稳压器。该技术是根据控制区,线路压降补偿(LDC)以及控制器参数选择的概念开发的。在澳大利亚系统上进行的仿真表明,该技术适用于具有多个调节装置(包括DG)的任何系统。

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