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全固态直流断路器在多电飞机配电环网中的应用

徐瑜飞 刘晓悦 李茂

现代电子技术2026,Vol.49Issue(12):16-22,7.
现代电子技术2026,Vol.49Issue(12):16-22,7.DOI:10.16652/j.issn.1004-373X.2026.12.003

全固态直流断路器在多电飞机配电环网中的应用

Application of DC solid-state circuit breaker in the ring-type distribution network of more-electric aircraft

徐瑜飞 1刘晓悦 1李茂2

作者信息

  • 1. 华北理工大学 电气工程学院,河北 唐山 063000
  • 2. 河北科技学院 计算机学院,河北 唐山 063000
  • 折叠

摘要

Abstract

With the development of more electric aircraft(MEA)architecture,the demand for high reliability,fast fault isolation and intelligent control of DC distribution system is becoming more and more urgent.A solid-state circuit breaker(SSCB)based on anti-parallel insulated gate bipolar transistor(IGBT)is proposed for the MEA 270 V DC ring-type distribution network,which integrates bi-directional energy absorption and communication functions.After theoretical analysis and experimental verification,the parameters of the RC buffer circuit are optimized to balance the shutdown speed and over-voltage suppression capability,and the metal oxide varistors(MOV)are combined to achieve efficient energy dissipation.The prototype testing results show that,under 200 A short-circuit fault,the SSCB shutdown time is only 1.86 ms,the peak bus current is 382 A,and the peak over-voltage is controlled at around 410 V,which is significantly better than the traditional mechanical circuit breaker.The CAN bus communication module is designed to realize bidirectional data interaction between the circuit breaker and the host computer.The prototype experimental results show that the proposed scheme features fast breaking,low voltage stress and intelligent management,which can provide a technical reference for the protection of MEA DC distribution systems.

关键词

多电飞机/直流配电网/全固态断路器/RC缓冲电路/CAN通信/故障电流

Key words

more electric aircraft/DC distribution network/solid-state circuit breaker/RC buffer circuit/CAN communication/fault current

分类

信息技术与安全科学

引用本文复制引用

徐瑜飞,刘晓悦,李茂..全固态直流断路器在多电飞机配电环网中的应用[J].现代电子技术,2026,49(12):16-22,7.

基金项目

河北省军民融合科技创新项目(SJMYF202401) (SJMYF202401)

国家自然科学基金项目(42274056) (42274056)

现代电子技术

1004-373X

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