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风电变流技术 ★ 5.0

核电厂旋转异步电机并联运行发电机组主保护优化方案

Main Protection Optimization Scheme for Generator Parallel Operation of Rotating Asynchronous Machine in Nuclear Power Plants

作者 Yikai Wang · Chaozheng Xu · Jian Qiao · Zhihui Dai · Liming Tan · Xianggen Yin
期刊 IEEE Transactions on Power Delivery
出版日期 2025年4月
技术分类 风电变流技术
相关度评分 ★★★★★ 5.0 / 5.0
关键词 核电厂 旋转异步电机系统 发电机保护 内部短路故障 动态实验
语言:

中文摘要

核电厂旋转异步电机(RAM)系统通过两台并联发电机为控制棒驱动机构(CRDM)提供稳定可靠的电源。目前RAM系统发电机主保护仅配置纵联差动保护,无法反映定子绕组匝间短路及分支间短路故障。本文基于核电厂RAM发电机并联运行特点,提出双机分相横差保护与双机不完全纵差保护方案。通过建立发电机内部故障集及电势分裂模型,对不同主保护配置进行定量分析,结果表明现有纵差保护及所提不完全纵差保护可正确反应绝大多数内部短路故障。最后通过动态实验验证了该保护方案在实际机组运行中的可行性。

English Abstract

The Rotating Asynchronous Machine (RAM) system of a nuclear power plant provides a stable and reliable power supply for the control rod drive mechanism (CRDM) through two parallel generators. At present, the main protection of the generators in the RAM system is only configured with longitudinal differential protection, which cannot reflect the interturn short circuit fault and interbranch short circuit fault of the stator winding. Based on the characteristics of parallel connection of RAM generators in nuclear power plants, this article proposes a dual-generator split phase transverse differential protection and a dual-generator incomplete longitudinal differential protection. Through the internal fault set of the generator and the internal fault potential splitting model of the generator, the quantitative analysis of different main protection configuration schemes is carried out. It is concluded that the existing longitudinal differential protection and the incomplete longitudinal differential protection of two parallel generators can correctly reflect the vast majority of internal short-circuit faults. Finally, the dynamic experiment is carried out to prove the feasibility of the protection method in the actual unit operation.
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SunView 深度解读

该研究中的发电机并联运行保护方案对阳光电源的储能和光伏产品线具有重要参考价值。双机分相横差和不完全纵差保护的创新思路可应用于ST系列储能变流器的并联运行保护设计,特别是在大型储能电站中多台变流器的协同运行场景。该技术对提升PowerTitan储能系统的运行可靠性具有启发意义,可优化系统的故障检测和保护策略。同时,这种保护方案的分析方法也可借鉴到SG系列光伏逆变器的并网保护设计中,有助于提高产品在复杂电网环境下的运行稳定性。