Enhancing the Power Transfer Capability in a power system network using Series Connected FACTS Devices for increased Renewable penetration

S. Sreejith, S. Rangarajan, M. Ambili, P. Sujyothi, V. Nithya
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引用次数: 5

Abstract

The rapid increase in the power generation from various emerging wind and solar projects are proving to be highly beneficial and eco-friendly. But adding a new renewable resource onto an existing transmission network has become a challenge. The existing transmission network should be in a position to accept the newly generated power, when a renewable source is integrated onto it. This paper explains the simulated results of various Series Compensated FACTS devices by which the enhancement could be carried out there by considering the Installation of new transmission lines as a final resort for integrating the renewable sources. An assessment carried out in this sequence to enhance the power transfer capacity to facilitate the renewable penetration will prove to be an efficient approach. The various ways for enhancing the power transfer capacity of a transmission network to enhance the power flow is totally a different concept. The application discussed in this paper is yet another concept of enhancing the power transfer capability of a transmission network by the various techniques mentioned above strictly for integrating renewable resources. Initially couple of Real Time Scenario were discussed where Series FACTS Devices had been installed on the Lines only to Increase the Power Transfer Capability for accommodating more Renewable Energy Resources. Apart from this, the main objective of this paper is to present the simulation results of a Standard 5 Bus Test System. The Series Connected FACTS devices are connected for increasing the Power transfer capability of the lines that would give more spacing for the Renewable Energy Devices like PV Solar and Wind to be integrated.
使用串联连接的FACTS设备增强电力系统网络中的电力传输能力,以增加可再生能源的渗透
各种新兴的风能和太阳能项目发电的快速增长被证明是非常有益和环保的。但是,将一种新的可再生资源添加到现有的输电网络中已经成为一项挑战。当可再生能源并网时,现有的输电网络应该能够接受新产生的电力。本文解释了各种串联补偿FACTS装置的模拟结果,通过考虑安装新的输电线路作为整合可再生能源的最后手段,可以在那里进行增强。按此顺序进行评估,以提高电力输送能力,促进可再生能源的普及,将被证明是一种有效的方法。提高输电网输电能力以增强潮流的各种方法是完全不同的概念。本文所讨论的应用是严格整合可再生资源,通过上述各种技术来提高输电网输电能力的另一种概念。最初讨论了几个实时场景,其中系列FACTS设备已安装在线路上,只是为了增加电力传输能力,以容纳更多的可再生能源。除此之外,本文的主要目的是给出标准5总线测试系统的仿真结果。串联FACTS设备的连接是为了增加线路的电力传输能力,这将为可再生能源设备(如光伏、太阳能和风能)提供更多的空间。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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