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信息化应用21年18期

基于故障树模型的发射场地面设备故障诊断方法研究
吕金飞,褚金钱
(航天工程大学士官学校,北京 102249)

摘  要:发射场地面设备的稳定运行是保证发射任务成功实施的前提,需要深入分析和快速准确判断设备的运行状态。文章研究了基于故障树模型的发射场地面设备的故障诊断方法,分析了地面设备的故障类型和故障分析方法,提出了基于 T-S 模糊模型来描述系统设备和故障状态之间的关系。研究结果表明:该方法能够快速并准确定位设备故障,提高故障分析效率。文章的研究内容可为发射场地面设备的故障诊断提供依据和参考。


关键词:发射场地面设备;故障诊断;故障树;T-S 模糊



DOI:10.19850/j.cnki.2096-4706.2021.18.034


中图分类号:V553;V467                             文献标识码:A                                   文章编号:2096-4706(2021)18-0135-04


Research on Fault Diagnosis Method of Ground Equipments in Launch Site Based on Fault Tree Model

LYU Jinfei, CHU Jinqian

(Sergeant School of University of Aerospace Engineering, Beijing 102249, China)

Abstract: The stable operation of the ground equipments in launch site is the premise to ensure the successful implementation of launch task. It is necessary to deeply analyze and quickly and accurately judge the operation state of the equipment. This paper studies the fault diagnosis method of ground equipments in launch site based on fault tree model, analyzes the fault types and fault analysis methods of ground equipments, and puts forward the description the relationship between system equipment and fault state based on T-S fuzzy model. The study results show that this method can quickly and accurately locate equipment faults and improve the efficiency of fault analysis. The research content of this paper can provide basis and reference for fault diagnosis of ground equipments in launch site.

Keywords: ground equipments in launch site; fault diagnosis; fault tree; T-S fuzzy


参考文献:

[1] 张强 . 飞行器发射场信息安全应对措施 [J]. 电子技术与软件工程,2017(14):218-219.

[2] 史荟燕,陈书驰 . 美国航天发射场安全评估与仿真技术应用 [J]. 载人航天,2009,15(3):34-39.

[3] 张建荣,董富治,郝晋峰,等 . 面向试验过程的发射场地面设备风险分析方法 [J]. 火力与指挥控制,2017,42(1):166- 169.

[4] 王嘉轶,闻新.航天器故障诊断技术的研究现状与进展 [J]. 航空兵器,2016(5):71-76.

[5] 谢敏,楼鑫,罗芊 . 航天器故障诊断技术综述及发展趋势 [J]. 软件,2016,37(7):70-74.

[6] KAI F W,JIE X,GUANG O Y,et al. Sensor fault diagnosis for flight control system based on Cubature Kalman filter [C]// Proceedings of 2014 IEEE Chinese Guidance,Navigation and Control Conference.Yantai:IEEE,2014:2657-2662.

[7] 周明,何息忠,周勇 . 故障树分析法在发射场地面设备系统中的应用研究 [C]// 中国宇航学会’99 导弹航天器发射技术研 讨会 . 酒泉:中国宇航学会,1999:95-101.

[8] 王东,郭永,胡经民,等 . 基于故障树分析法火箭测量系统故障诊断研究 [J]. 北华航天工业学院学报,2014,24(3):20- 23.

[9] 范文晶,王召利,干兴业,等 . 基于故障树的发射车故障诊断技术研究 [J]. 测控技术,2020,39(10):19-23+31.

[10] SHELTON S V. Residential Space Conditioning with Solid Sorption Techonology [J].Heat Recovery Systems and CHP,1993,13 (4):333-361.

[11] MEUNIER F. Solid Sorption: An alternative to CFCs [J]. Heat Recovery Systems and CHP,1993,13(4):289-295.

[12] 陶勇剑,董德存,任鹏 . 基于故障树的系统可靠性估计不确定性分析 [J]. 同济大学学报(自然科学版),2010,38(1): 141-145.

[13] MENTES A,HELVACIOGLU I H. An application of fuzzy fault tree analysis for spread mooring systems [J].Ocean Engineering, 2011,38(2-3):285-294.


作者简介:吕金飞(1978 -),男,汉族,山东平原人,讲师,博士研究生,研究方向:航天测试发射。