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文章摘要
基于性能退化的漏电保护模块可靠性仿真分析
Received:April 20, 2020  Revised:May 26, 2020
DOI:10.19753/j.issn1001-1390.2023.04.009
中文关键词: 漏电断路器  性能退化  Monte-Carlo仿真  容差分析
英文关键词: residual  current circuit  breaker, performance  degradation, Monte-Carlo  simulation,
基金项目:国家自然科学(51937004,51777056);河北省自然科学(E2019202124)。
Author NameAffiliationE-mail
Li Kui* State Key Laboratory of Reliability and Intelligence of Electrical EquipmentHebei University of Technology likui@hebut.edu.cn 
Wang Yue State Key Laboratory of Reliability and Intelligence of Electrical EquipmentHebei University of Technology 738187581@qq.com 
Zhao Chengchen State Key Laboratory of Reliability and Intelligence of Electrical EquipmentHebei University of Technology zhaocc0827@163.com 
Hao Yunqian State Key Laboratory of Reliability and Intelligence of Electrical EquipmentHebei University of Technology 906332947@qq.com 
Liu Zhengjun State Key Laboratory of Reliability and Intelligence of Electrical EquipmentHebei University of Technology liuzhengjun8000@163.com 
Hu Bokai State Key Laboratory of Reliability and Intelligence of Electrical EquipmentHebei University of Technology 1473880578@qq.com 
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中文摘要:
      漏电断路器是低压配电系统中重要的终端保护电器,在防止漏电事故、保护用电人员人身安全上发挥着重要作用。漏电保护模块由电子元器件组成,其参数偏差和退化造成参数漂移,会引起断路器漏电保护性能退化。为此,文中构建漏电保护模块的仿真模型,采用灵敏度分析进行漏电保护模块关键元器件的辨识,考虑容差引起个体间的性能的差异,利用Monte-Carlo仿真获取系统性能参数退化数据,分析由元器件的退化造成的保护系统的性能退化,根据性能变化实现漏电保护可靠性评估,为早期设计提供决策支持。
英文摘要:
      Residual current circuit breakers are important terminal protection appliances in low-voltage power distribution systems. They play a major role in preventing leakage accidents and protecting the personal safety of power users. The leakage protection module is composed of electronic components, and its parameter deviation and degradation cause parameter drift, which will cause the protection performance degradation of residual current circuit. Therefore, the simulation model of leakage protection module is established, and sensitivity analysis is used to identify the key components of leakage protection module. Considering the performance difference caused by tolerance, the Monte-Carlo simulation is used to obtain system performance degradation data. The protection system degradation caused by the degradation of components, and the reliability evaluation of leakage protection is realized according to the performance change, which can provide decision support for early design.
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