量子电子学报 ›› 2024, Vol. 41 ›› Issue (6): 881-890.doi: 10.3969/j.issn.1007-5461.2024.06.005

• 激光技术与器件 • 上一篇    下一篇

探测器阵列靶电路系统的可靠性设计

袁礼朝 1,2,3, 谭逢富 1,3, 黄志刚 1,3, 程乙轮 1,2,3, 侯再红 1,3*   

  1. 1 中国科学院合肥物质科学研究院安徽光学精密机械研究所, 中国科学院大气光学重点实验室, 安徽 合肥 230031; 2 中国科学技术大学, 安徽 合肥 230026; 3 先进激光技术安徽省实验室, 安徽 合肥 230037
  • 收稿日期:2022-12-06 修回日期:2023-02-08 出版日期:2024-11-28 发布日期:2024-11-28
  • 通讯作者: E-mail: zhhou@aiofm.ac.cn E-mail:E-mail: zhhou@aiofm.ac.cn
  • 作者简介:袁礼朝 ( 1997 - ), 安徽淮南人, 研究生, 主要从事电路系统可靠性分析与设计方面的研究。E-mail: 13085045015@qq.com
  • 基金资助:
    国家自然科学基金 (41875033)

Reliability design of detector array target circuit system

YUAN Lichao 1,2,3 , TAN Fengfu 1,3 , HUANG Zhigang 1,3 , CHENG Yilun 1,2,3 , HOU Zaihong 1,3*   

  1. 1 Key Laboratory of Atmospheric Optics, Anhui Institute of Optics and Fine Mechanics, HFIPS, Chinese Academy of Sciences, Hefei 230031, China; 2 University of Science and Technology of China, Hefei 230026, China; 3 Advanced Laser Technology Laboratory of Anhui Province, Hefei 230037, China
  • Received:2022-12-06 Revised:2023-02-08 Published:2024-11-28 Online:2024-11-28

摘要: 探测器阵列靶是测量激光强度时空分布的常用设备, 电路系统作为其重要组成部分, 其可靠性是影响探测 器阵列靶能否高效稳定运行的关键因素之一。本文首先对电路系统进行了故障模式及影响分析 (FMEA), 获得不同 模块对系统整体可靠性的影响。为计算电路系统的可靠度, 引入了每个模块的重要度, 并在对模块重要度进行分析 时, 对传统AGREE分配法中的重要度进行了改进。随后根据改进的AGREE分配法, 对可靠度指标进行分配, 对不满 足可靠度指标的模块, 采用冗余设计提高它们的可靠度。最终使得电路系统工作5 h的可靠度由0.99931830提高到 0.99996730。本研究为探测器阵列靶电路系统的可靠性设计与分配提供了方法与依据。

关键词: 激光技术, 重要度, 可靠度, AGREE分配法, 故障模式及影响分析, 探测器阵列靶

Abstract: Detector array target is a common equipment for measuring the spatiotemporal distribution of laser intensity, and as an important part of detector array target, circuit system's reliability is the key to the efficient and stable operation of detector array target. Firstly, the failure mode and effect analysis (FMEA) of the circuit system is carried out to obtain the influence of different modules on the reliability of the overall system. In order to calculate the reliability of the circuit system, the importance of each module is introduced, and the importance of the traditional AGREE allocation method is improved when analyzing the importance of each module. Subsequently, according to the improved AGREE allocation method, reliability indexes are assigned, and redundancy design is used to improve the reliability of the modules that do not meet the reliability index, so that the reliability of the circuit system operating for 5 h is increased from 0.99931830 to 0.99996730. This study provides a method and basis for the reliability design and distribution of detector array target circuit systems.

Key words: laser technology, importance, reliability, AGREE allocation method, failure mode and effect analysis, detector array target

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