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HVDC Transmission Placement Study to Increase Critical Clearing Time Using Sensitivity Analysis 利用敏感性分析增加关键清障时间的高压直流输电布局研究
Pub Date : 2024-01-31 DOI: 10.12962/jaree.v8i1.370
Gede Dyotha, Yogadipha Bagas, Ardyono Priyadi, V. Lystianingrum
Stability is the ability to go back to ordinary conditions after an interruption. Power transfer using an AC transmission system has some stability issues. Fast modulation of the HVDC transmission can escalate the transient stability of interconnected power systems thereby increasing the CCT. To calculate load flow sensitivity, use the load flow sensitivity analysis command in Powerfactory 15.1. The variable considered in this research is dφ/dP. In this paper, we will discuss the use of sensitivity analysis to specify the location of the HVDC transmission to increase the CCT value. By taking several samples that have high sensitivity values,namely channels 8-9 to 7-8 with an average cct change value of 0.555 s, mediumvalues, channels 5-8 to 9-6 have an average cct change of 0.234 s, and low fromchannels 6-4 to 9-4 with an average change of 0.109 s. The data above shows thata channel with a large sensitivity value will provide a higher increase in cct valuecomparedwith a low sensitivityvaluewhen paired with an HVDC.
稳定性是指中断后恢复正常状态的能力。使用交流输电系统进行电力传输存在一些稳定性问题。高压直流输电的快速调制可提高互联电力系统的瞬态稳定性,从而增加 CCT。要计算负荷流灵敏度,请使用 Powerfactory 15.1 中的负荷流灵敏度分析命令。本研究考虑的变量为 dφ/dP。本文将讨论如何利用灵敏度分析来指定高压直流输电的位置,以提高 CCT 值。通过采集几个灵敏度值较高的样本,即通道 8-9 至 7-8,平均 CCT 变化值为 0.555 秒;灵敏度值中等的通道 5-8 至 9-6 平均 CCT 变化值为 0.234 秒;灵敏度值较低的通道 6-4 至 9-4,平均 CCT 变化值为 0.109 秒。
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JAREE (Journal on Advanced Research in Electrical Engineering)
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