马来西亚平静时期水平地磁分量时间导数估算及其对GIC评估的影响

N. M. Anuar, F. Kasran, Zatul Iffah Abdul Latif, Siti Amalina Ence Ab Rahim, Arif Manut, M. H. Jusoh, N. A. Hadi, A. Yoshikawa
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引用次数: 1

摘要

本文对第24太阳周期(2017年)平静期马来西亚地区可能的地磁感应电流(GIC)活动进行了初步观测。事实上,电力系统运行的损坏可能会导致变压器的故障,而变压器是电力系统的主要组成部分。此前,在长期调查中已经确定了造成损害的原因,即所谓的空间天气效应(GIC)。本文根据从OMNIWeb数据源中提取的行星指数(Kp)必须小于3的值来选择安静期。当前工作的主要目标是调查马来西亚地区GIC振幅的行为,以及确定对马来西亚地区GIC活动有重大贡献的参数(电离层电流和磁层电流)。利用地磁场数据,提取水平分量的时间导数(dH/dt)作为GIC活动指标,进行了类型分析。地磁数据来自MAGDAS在兰卡威(LKW)、霹雳(PER)和柔佛(JOH)站的观测站。随后,dH/dt值小于30 nT/min表示在该特定日期三个台站均未发生GIC活动。结果表明,电离层电流DP2与dH/dt幅值吻合较好。此外,纬度相关性最好地代表了GIC活动的控制因素。
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Estimation of Time Derivative of Horizontal Geomagnetic Component for GIC Assesment in Malaysia during Quiet Period
This paper presents the preliminary observation on the possible Geomagnetic Induced Current (GIC) activities at Malaysia region during the quiet period of solar cycle 24 (year 2017). In fact, the damage of power system operation might lead to the malfunction of the transformer, which is the main component of the power system. Previously, the cause of the damage has been identified in the long-term investigation, where it drives from the space weather effect so-called (GIC). In this work, the quiet period has been selected by respecting the value of K-Planetary index (Kp) must be less than 3 extracted from OMNIWeb data source. The main objective of the current work is to investigate the behavior of the GIC amplitude at Malaysia region as well as to identify the parameter (ionospheric current and magnetospheric current) that contribute significantly towards the GIC activity at Malaysia region. The type of analysis was carried out using the data of geomagnetic field by extracting the time derivative of the horizontal component (dH/dt) as the indicator for GIC activity. The geomagnetic data was obtained from the MAGDAS observatories at Langkawi (LKW), Perak (PER), and Johor (JOH) stations. Subsequently, the dH/dt value is less than 30 nT/min represent no GIC activity occurred during that particular date for all three stations. However, the results revealed that the ionospheric current, DP2 corresponds well to the dH/dt amplitude. Plus, the latitudinal correlation gave the best representation of the control factor of GIC activity.
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