Evaluation of Differential Protection in a Main Power Transformer: A Case Study in PT Pertamina Geothermal Energy Area of Kamojang

Gady Altama, Muhamad Yusvin Mustar, R. Syahputra, T. Prasetyo
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Abstract

The electric power system consists of various components, ranging from the components of generation, transmission, and distribution. The systems are quite expensive, so that excellent, reliable, and economic protection is needed to avoid internal and external faults.  The faults can trigger damage to components, especially on the main transformers in the Power Plant Geothermal Unit 4 of the Kamojang area managed by PT Pertamina Geothermal Energy. Disturbances that occur in the main transformers of various types so that the primary protection needed in the transformer is a differential relay to protect to avoid interference that occurs. This study discusses the comparison of theoretical differential relay calculation calculations with actual differential relay setting data in the Kamojang Unit 4 Geothermal Power Plant and simulates with ETAP 12.6 software. The problem that occurs in the main transformer of the Geothermal Power Unit Unit 4 Kamojang area is the difference in the slope 1 of the actual setting data with a mathematical calculation that is the actual setting data of 40% and the numerical calculation data worth 8.5%. Please note that the minimum slope one limit is 5%. PT Pertamina Geothermal Energy made slope one changes, so that differential relays are not too sensitive to the interference current that occurs within the protection zone of differential relays.
主变压器差动保护评价——以卡莫江PT Pertamina地热能区为例
电力系统由各种组成部分组成,包括发电、输电和配电。这些系统非常昂贵,因此需要出色、可靠和经济的保护来避免内部和外部故障。这些故障可能会导致部件损坏,特别是PT Pertamina地热能源公司管理的Kamojang地区地热发电厂4号机组的主变压器。在各种类型的主变压器中发生的干扰,因此变压器中需要的主要保护是差动继电器来保护以避免发生干扰。本文对卡莫江地热发电厂4号机组差动继电器理论计算结果与实际差动继电器整定数据进行了比较,并利用ETAP 12.6软件进行了模拟。卡莫江地区4号地热发电机组主变出现的问题是实际整定数据斜率1差,经数学计算,实际整定数据为40%,数值计算数据为8.5%。请注意,最小斜率限制为5%。PT Pertamina地热能源公司对坡度1进行了改变,使差动继电器对差动继电器保护区内的干扰电流不太敏感。
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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