基于可靠性分析的模块化微型能量路由器组合策略  

Modular micro energy router combination strategy based on reliability analysis

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作  者:曹增新 张国驹[2,3] 何彦彬 余谦 刘旭 裴玮 CAO Zengxin;ZHANG Guoju;HE Yanbin;YU Qian;LIU Xu;PEI Wei(State Grid Beijing Electric Power Company Yanqing Power Supply Company,Beijing 102100,China;Institute of Electrical Engineering,Chinese Academy of Sciences,Beijing 100190,China;Institute of Electrical Engineering and Advanced Electromagnetic Drive Technology,Qilu Zhongke,Ji’nan 250001,China)

机构地区:[1]国网北京电力公司延庆供电公司,北京102100 [2]中国科学院电工研究所,北京100190 [3]齐鲁中科电工先进电磁驱动技术研究院,山东济南250001

出  处:《电工电能新技术》2025年第3期17-26,共10页Advanced Technology of Electrical Engineering and Energy

基  金:国网北京市电力公司科技项目(520217220004)。

摘  要:为保障野外作业的顺利进行,本文基于模块化微型能量路由器可靠性分析提出了一种子模块矩阵连接的组合策略。首先,根据野外保障条件的差异,以便携子模块为基础,提出了模块化微型能量路由器方案,可同时满足团队作业和个人作业的电能需要;然后,针对野外作业的高可靠性要求,建立了子模块的可靠性数学模型,并结合产品设计经验,分析影响子模块失效的关键因素;接着,建立了矩阵连接的微型能量路由器的可靠性模型,设计了综合考虑可靠性评估和满足负荷需要的组合控制策略,保障供电可靠性;最后,通过实验结果证明了本文研究的有效性。In order to guarantee the smooth field operation,a combination strategy of submodule matrix connection is proposed based on the reliability analysis of modular miniature energy router.Firstly,according to the difference of field guarantee conditions,a modular miniature energy router scheme is proposed based on portable sub-modules,which can simultaneously meet the electric energy needs of teamwork and individual operation;then,for the high reliability requirements of field operation,the reliability mathematical model of sub-modules is established,and the key factors affecting the failure of sub-modules are analyzed in combination with the experience of product design;then,a matrix-connected,the reliability model of the miniature energy router is established,and a combined control strategy with comprehensive consideration of reliability assessment and meeting the load needs is designed to guarantee the reliability of power supply;finally,the experimental results have demonstrated the effectiveness of the aforementioned research.

关 键 词:微型能量路由器 矩阵连接 组合控制策略 模块化设计 

分 类 号:TM73[电气工程—电力系统及自动化]

 

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