核电站旋转异步机发电机定子接地故障的新型三次谐波电压保护方法

IF 3.8 2区 工程技术 Q2 ENGINEERING, ELECTRICAL & ELECTRONIC IEEE Transactions on Power Delivery Pub Date : 2024-10-14 DOI:10.1109/TPWRD.2024.3479286
Yikai Wang;Chenxiao Tang;Liming Tan;Jian Qiao;Xianggen Yin
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引用次数: 0

摘要

核电站的旋转异步机(RAM)是控制棒驱动机构(CRDM)的唯一供电系统。目前 RAM 的保护系统由传统的分立式继电器组成,可靠性和灵活性较低。工程领域已开始普及数字保护装置和新原理。本文根据 RAM 中发电机定子绕组 "之 "字形星形绕组连接的特点,分析了接地故障三次谐波电压特性。研究发现,当故障电阻超过 5 kΩ 时,传统的三次谐波电压标准因灵敏度低而难以应用。因此,本文提出了一种基于三次谐波电压变化的新型保护方法,通过引入约束量来有效提高保护可靠性。仿真和动态模型实验表明,与现有的三次谐波电压判据相比,本文提出的方法具有更高的灵敏度和至少 10 kΩ 的抗故障能力。
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A Novel Third-Harmonic Voltage Protection Method for the Generator Stator Ground Fault of Nuclear Power Plant's Rotating Asynchronous Machine
The nuclear power plant's rotating asynchronous machine (RAM) is the sole power supply system of the control rod drive mechanism (CRDM). The current RAM's protection system consists of traditional discrete relays, which have low reliability and flexibility. The popularization of digital protection devices and new principles has been started in the engineering field. Based on the feature of the Zig-Zag star winding connection of the generator stator winding in RAM, this paper analyzes the after-ground fault third-harmonic voltage characteristics. It is found that when the fault resistance exceeds 5 kΩ, the application of the traditional third harmonic voltage criteria is difficult because of the low sensitivity. Thus, this paper proposes a novel protection method based on the variation in the third-harmonic voltage, effectively improving protection reliability by introducing restraining quantity. Simulation and dynamic model experiments show that, compared to the existing third-harmonic voltage criteria, the proposed method exhibits higher sensitivity and has an against fault resistance ability of at least 10 kΩ.
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来源期刊
IEEE Transactions on Power Delivery
IEEE Transactions on Power Delivery 工程技术-工程:电子与电气
CiteScore
9.00
自引率
13.60%
发文量
513
审稿时长
6 months
期刊介绍: The scope of the Society embraces planning, research, development, design, application, construction, installation and operation of apparatus, equipment, structures, materials and systems for the safe, reliable and economic generation, transmission, distribution, conversion, measurement and control of electric energy. It includes the developing of engineering standards, the providing of information and instruction to the public and to legislators, as well as technical scientific, literary, educational and other activities that contribute to the electric power discipline or utilize the techniques or products within this discipline.
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