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A Faster Approach for Identifying suitable Locations for TCSC Placement for Voltage Profile Enhancement and Loss Reduction

机译:一种更快的方法来确定TCSC放置的合适位置,以增强电压分布并降低损耗

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摘要

Injection of reactive power into power systems through FACTs devices has been identified as one of the ways through which the existing power network operation could be enhanced. However, identification of suitable locations, where the effect of these FACTs devices will be most beneficial to the network, has been a growing concern to electric power utilities in planning and operation of power systems. Consequently, a safe and reliable power system operation requires that all operating states, which could be used to enhance power system operation such as voltage profile enhancement and loss reduction, must be quickly detected and identified. This paper, therefore, introduces a Line Strength Index (LSI) for identifying suitable locations where reactive power supports such as Thyristor-controlled series capacitor (TCSC) could be located for voltage profile enhancement and transmission loss reduction within the system. Furthermore, the influence of TCSC placement on the voltage profile and transmission losses is investigated. The effectiveness of the approach is demonstrated on a simple 6-bus power network. The results obtained are compared with that obtained when TCSC is placed at a randomly selected location. This shows that the integrity of a stressed power network, in terms of security and reliability, could be easily enhanced through the application of TCSC whose placement is determined by LSI, a non-iterative-based approach.
机译:通过FACTs设备将无功功率注入电力系统已被确认为可以增强现有电力网络运行的方式之一。然而,在电力系统的规划和运行中,对于这些电力公司来说,识别这些FACTs设备的作用将最有益于网络的合适位置已经越来越引起人们的关注。因此,安全可靠的电力系统运行要求必须迅速检测和识别所有可用于增强电力系统运行的运行状态,例如电压分布增强和损耗降低。因此,本文介绍了一种线路强度指数(LSI),用于确定可以放置无功功率支持(如晶闸管控制的串联电容器(TCSC))的合适位置,以增强系统中的电压分布并降低传输损耗。此外,还研究了TCSC放置对电压曲线和传输损耗的影响。在简单的6总线电源网络上证明了该方法的有效性。将获得的结果与将TCSC放置在随机选择的位置时获得的结果进行比较。这表明,通过应用TCSC可以轻松地增强压力网络的安全性和可靠性,而TCSC的位置由基于非迭代的方法LSI确定。

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