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作 者:尹园威[1] 尚朝轩[1] 马彦恒[2] 李刚[1]
机构地区:[1]军械工程学院电子与光学工程系,石家庄050003 [2]军械工程学院无人机工程系,石家庄050003
出 处:《北京航空航天大学学报》2015年第1期90-95,共6页Journal of Beijing University of Aeronautics and Astronautics
基 金:"十二五"装备预先研究项目(51319040201)
摘 要:复杂电子装备采用层次化、模块化的设计,维修级别与测试要求具有层级化配置的特点,据此提出一种基于层次测试性模型的评估方法.多信号流图模型具有表达多维故障属性的能力,根据维修级别与装备物理结构的划分层次,在各个层次上建立该层的多信号流图模型,对无法测试诊断或维修的部分,建立下一层的多信号流图模型,以此构成层次测试性模型;使用该模型获取层次相关性矩阵,运用测试性评估数学模型得到各维修级别上装备的测试性水平.实例分析验证了该方法能够有效评估装备在不同条件下的测试性水平,同时可为测试性设计与维修决策提供指导帮助.The layered and modularized design is always used in complex electronic equipment,where the maintenance level and test requirement are both characterized by hierarchy configuration. Therefore,a novel evaluation approach was presented based on hierarchical testability model. The multi-signal flow graph model has ability to present multi-fault factors,according to the hierarchical classification based on maintenance level and physical structure of equipment,the multi-signal flow graph model could be established for each level respectively. For any part which can't be tested or maintained,the multi-signal flow graph model would be established on lower level; thereby the hierarchical testability model was built up. The hierarchical dependence matrix was obtained based on above model,and then the testing level of equipment on each maintenance level was obtained by using the mathematical model of testability evaluation. The analysis results of example prove that this method could effectively evaluate the testability levels of equipments in different situations,at the same time this method could provide available guidance and assistance for the design of testability and maintenance.
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