Study of leakage current in underground mine power network: a case study in mining in Vietnam

Q3 Engineering
Nguyen Truong Giang, Do Nhu Y, Nguyen Thac Khanh, Ngo Xuan Cuong
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Abstract

Purpose. To determine DC leakage current in mine power network with long DC power transmission. Methodology. Nowadays, the increase in capacity and working depth leads to the use of DC power transmission, which has many benefits both economically and technically in mining. However, the appearance of DC power transmission changes the structure of the network. In the underground mine power network, there will be electrical networks with industrial frequency 50 Hz, DC power networks, and power networks after variable frequency inverters. The correlation of these network parameters complicates leakage protection in the mine power network. For DC power transmission in mining, the DC network parts have a large length, so during the working process, electricity leakage in these parts of the network often occurs. Leakage current in a DC network depends not only on DC network parameters but also on AC network parameters. The article uses analytical methods and simulation methods on Matlab/Simulink software to determine leakage currents in underground mine power networks with DC transmission when there is a change in power network parameters. Findings. The research results show that the leakage current value of the DC network is greatly affected when the insulation parameters of the electrical network change, not only in the DC power network but also in the AC network before and after the inverter. This causes the unreliable operation of the leakage protection device in this DC transmission network. Originality. Calculation model and simulation of DC leakage current in underground mine power networks with long DC transmission in mining in Vietnam Practical value. The research results are the basis for calculating and selecting leakage protection equipment for the purpose of improving safety in underground mining in Vietnam.
矿井地下电网泄漏电流研究:越南矿业案例研究
目的。确定矿井电网中长距离直流输电的直流泄漏电流。方法。如今,随着产能和工作深度的增加,直流输电在矿山中的使用在经济和技术上都有很多好处。然而,直流输电的出现改变了电网的结构。在矿山井下电网中,会有工频 50 赫兹的电网、直流电网和变频逆变器后的电网。这些网络参数的相关性使矿井电网的漏电保护变得复杂。对于矿用直流输电而言,直流电网部分长度较大,因此在工作过程中,这些部分的电网经常出现漏电现象。直流电网中的泄漏电流不仅取决于直流电网参数,还取决于交流电网参数。文章利用 Matlab/Simulink 软件上的分析方法和仿真方法,确定当电网参数发生变化时,采用直流输电的矿井下电网中的泄漏电流。研究结果。研究结果表明,当电网绝缘参数发生变化时,直流电网的泄漏电流值会受到很大影响,不仅是直流电网,逆变器前后的交流电网也会受到影响。这就造成了漏电保护装置在该直流输电网络中的不可靠运行。原创性。越南矿山长距离直流输电的矿山井下电网直流泄漏电流的计算模型与仿真 实用价值。研究成果是计算和选择漏电保护设备的依据,以提高越南地下采矿的安全性。
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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来源期刊
CiteScore
1.70
自引率
0.00%
发文量
148
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