Analysis of the Application of Fault Current Limmiter in 500 Kv System When the Entry of Power Plants in 2023-2028 to Lower Short Circuit Level at 500 KV Gitet Java Madura Bali System

Komang Teddy Indra Kusuma, Budi Sudiarto
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Abstract

The Java Madura Bali system is the largest interconnection system in Indonesia, covering about 70% of the national electrical energy market. Electricity sales increased from 125.49 TWh in the first half of 2021 to 133.87 TWh in the first half of 2022. To maintain power balance and support energy consumption growth, additional power plants are integrated according to the RUPTL. This research aims to anticipate the increase in short circuit levels for both single-phase to ground and three-phase faults at the Extra High Voltage Substation due to new power plants, ensuring the short circuit level remains below 40 kA, in line with equipment standards. This prevents the costly replacement of 500 kV transmission system equipment. Using the Digsilent application, the study models the existing system, maps the N-1 contingency, and calculates the short circuit levels after the integration of power plants from 2023 to 2028. The results identify the type and optimal location of fault current limiters. Installing these limiters is expected to reduce the short circuit level by 5%, avoiding the need to replace transmission and substation equipment rated at 40 kA. Consequently, the 500 kV system of Java Madura Bali can operate reliably with the new power plant integrations.
分析 2023-2028 年发电厂进入 500 Kv 系统时故障电流限制器的应用,以降低 500 Kv Gitet Java Madura Bali 系统的短路水平
爪哇马都拉巴厘岛系统是印尼最大的互联系统,覆盖全国约 70% 的电力市场。售电量从 2021 年上半年的 125.49 太瓦时增至 2022 年上半年的 133.87 太瓦时。为保持电力平衡并支持能源消费增长,根据 RUPTL,需要整合更多的发电厂。这项研究旨在预测因新建发电厂而导致特高压变电站单相接地和三相故障短路水平的增加,确保短路水平保持在 40 kA 以下,符合设备标准。这就避免了更换 500 千伏输电系统设备的昂贵费用。利用 Digsilent 应用程序,该研究对现有系统进行了建模,绘制了 N-1 应急地图,并计算了 2023 年至 2028 年发电厂整合后的短路水平。研究结果确定了故障限流器的类型和最佳位置。安装这些限流器预计可将短路水平降低 5%,从而避免更换额定电流为 40 kA 的输电和变电设备。因此,爪哇马都拉巴厘岛的 500 千伏系统可在新发电厂整合后可靠运行。
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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