首页> 外文期刊>International Journal of Electrical Power & Energy Systems >The study of directional overcurrent relay and directional earth-fault protection application for 33 kV underground cable system in Malaysia
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The study of directional overcurrent relay and directional earth-fault protection application for 33 kV underground cable system in Malaysia

机译:马来西亚33 kV地下电缆系统的定向过流继电器和定向接地故障保护应用研究

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摘要

Differential protection scheme is based on comparison of measured variables such as current and voltage at the two ends of a line via a communication channel such as pilot wire. This scheme is preferred and extensively used in distribution feeder protection system in Malaysia due to its fast operation. However pilot-wire differential scheme has its own drawbacks especially on the maintenance of the pilot-wire. Once the plot-wire is out of service, the feeder protection is jeopardised. One of the options to overcome such maintenance issue is to adopt directional relay as the feeder protection. This paper investigates a suitable relay connection and the maximum torque angle for the directional relay for 33 kV underground network. In this study, a section of 33 kV underground network in Kuala Lumpur (KL) city has been analysed. All faults types have been simulated at all possible location in the network. The obtained voltage and current were then used to determine the operation of directional overcurrent and earth-fault relay. The simulation results indicate that 30° relay connection with 0° maximum torque angle (30°/0°) is the most suitable setting to be applied for 33 kV underground network in KL, as against the best general and most versatile setting, 45790°
机译:差动保护方案基于对测量变量的比较,这些测量变量是通过诸如引导线之类的通信通道对线路两端的电流和电压进行比较的。由于该方案运行迅速,因此在马来西亚的配电馈线保护系统中是首选方案,并已广泛使用。然而,引火线差分方案具有其自身的缺点,特别是在引火线的维护方面。一旦绘图线停止工作,馈线保护就会受到威胁。克服此类维护问题的一种选择是采用定向继电器作为馈线保护。本文研究了适用于33 kV地下网络的定向继电器的合适继电器连接和最大转矩角。在这项研究中,已经分析了吉隆坡(KL)市的一部分33 kV地下网络。已在网络中所有可能的位置模拟了所有故障类型。然后,将获得的电压和电流用于确定定向过电流和接地故障继电器的操作。仿真结果表明,与最大最佳通用设置45790°相比,在KL 33 kV地下网络中,最大扭矩角为0°(30°/ 0°)的30°继电器连接是最合适的设置。

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    University of Malaya Power Energy Dedicated Advanced Center (UMPEDAC), Department of Electrical Engineering, Faculty of Engineering. University of Malaya,50603 Kuala Lumpur, Malaysia;

    University of Malaya Power Energy Dedicated Advanced Center (UMPEDAC), Department of Electrical Engineering, Faculty of Engineering. University of Malaya,50603 Kuala Lumpur, Malaysia;

    University of Malaya Power Energy Dedicated Advanced Center (UMPEDAC), Department of Electrical Engineering, Faculty of Engineering. University of Malaya,50603 Kuala Lumpur, Malaysia;

    University of Malaya Power Energy Dedicated Advanced Center (UMPEDAC), Department of Electrical Engineering, Faculty of Engineering. University of Malaya,50603 Kuala Lumpur, Malaysia;

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  • 关键词

    multifocus image fusion; denoising; variational model; partial differential equations; image enhancement; image restoration;

    机译:多焦点图像融合;去噪变异模型偏微分方程;图像增强;影像还原;

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