GIC calculation in power grid based on layered earth mode

Ming Zou, Lianguang Liu
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引用次数: 7

Abstract

Geomagnetically induced currents (GIC) in power grid are highly depended on the magnetic storm intensity, the earth electrical structure, the network configuration and many other factors. The difference in the conductivity of ground at different depths is significant to calculate GIC accurately. According to the mechanism of GIC production, in this paper, it is firstly established the layered earth model, derived iterative formula of the earth wave impedance and the relationships between the earth surface potential (ESP) and the varying electromagnetic field, presented the ESP algorithm based on the plane wave model. Secondly, based on quasi-dc characteristic of GIC, equivalent models of components in power grids are set up, power grid modeling and its simplification method are brought forward, which take the direction of the transmission line, the electrical network structure, the run way and other influencing factors into consideration, and the matrix equation solution in convenience of calculation is deduced. Finally, based on the above work, the software has been developed to calculate ESP and power grid GIC. Taking Yanghuai power grid for example, the ESP and GIC in Yanghuai transmission system are calculated based on the geomagnetic data and the Yanghuai tectonic structure. The result compared with the measured data indicates that the proposed model and algorithm are simple, effective and of high accuracy.
基于层状大地模式的电网GIC计算
地磁感应电流在很大程度上取决于磁暴强度、地电结构、电网结构等多种因素。不同深度下地面电导率的差异对准确计算地应力具有重要意义。根据GIC的产生机理,本文首先建立了层状地球模型,推导了地波阻抗的迭代公式以及地表电位(ESP)与变化电磁场的关系,提出了基于平面波模型的ESP算法。其次,根据GIC的准直流电特性,建立了电网中各部件的等效模型,提出了考虑输电线方向、电网结构、运行方式等影响因素的电网建模及其简化方法,并推导了便于计算的矩阵方程解。最后,在上述工作的基础上,开发了电潜泵和电网GIC计算软件。以阳淮电网为例,根据地磁资料和阳淮构造构造计算了阳淮输电系统的ESP和GIC。与实测数据的对比表明,该模型和算法简单、有效、精度高。
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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