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液体火箭发动机地面试车实时故障检测算法
引用本文:谢廷峰,刘洪刚,黄强,吴建军.液体火箭发动机地面试车实时故障检测算法[J].航天控制,2008,26(1):74-78.
作者姓名:谢廷峰  刘洪刚  黄强  吴建军
作者单位:国防科技大学航天与材料工程学院,长沙,410073
基金项目:“863”基金资助(2002AA722070)
摘    要:为了实时有效地检测液体火箭发动机地面试车中的故障,提出了改进自适应阈值算法(IATA)。讨论了自适应阈值算法(ATA)的原理,研究了其改进方法,提高了算法对故障的敏感性和对新试车数据的适用性。通过大量历史试车数据和实际热试车对IATA算法实时性和有效性的验证表明,IATA算法不仅能够及时地检测到异常试车的故障,同时,对正常试车也没有误报警,简洁有效,计算量小,检测速度快。因此,IATA算法适用于液体火箭发动机地面试车的实时故障检测。

关 键 词:液体火箭发动机  自适应阈值算法  实时故障检测
文章编号:1006-3242(2008)01-0074-05
修稿时间:2006年11月7日

Real Time Fault Detection Algorithm for Liquid-propellant Rocket Engine Ground Test
Xie Tingfeng,Liu Honggang,Huang Qiang,Wu Jianjun.Real Time Fault Detection Algorithm for Liquid-propellant Rocket Engine Ground Test[J].Aerospace Control,2008,26(1):74-78.
Authors:Xie Tingfeng  Liu Honggang  Huang Qiang  Wu Jianjun
Abstract:In order to detect liquid rocket engine(LRE) ground test faults in real time effectively,the improved adaptive threshold algorithm(IATA) is proposed.Firstly,the theory of adaptive threshold algorithm(ATA) is discussed,and then the improvement methods are studied to increase the sensitivity for faults and applicability for new tests data.Results verified with the historical on-fire test data and actual ground test show that the IATA can detect fault and give an alarm in time for the abnormal data,and also have no false alarm for the normal data.The IATA is efficient,easy and fast because it only needs a very little amount of computation.As a conclusion,the IATA is suitable for the real time fault detection of liquid-propellant rocket engines.
Keywords:Liquid-propellant rocket engine  IATA algorithm  Real-time fault detection
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