The testability modeling and model conversion technology based on multi-signal flow graph

Dandan Liu, Zhaoyang Zeng, Cuihong Huang, Fan Li
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引用次数: 9

Abstract

Along with the increase of the level of complexity, integration and intelligence of system, prognostics and health management technology (PHM) has gotten more and more attention and application. The technology has become the key technology of increasing the reliability, testability, maintainability, supportability and safety of complex system. Doubtless the higher requirements are put forward to the testability technology. The testability modeling and model conversion technology are more and more emphasized by the product designer with widespread application for design for testability. In this paper, the testability modeling and model conversion technology based on the multi-signal flow graph are introduced. After describing the basic principle of testability model, the paper discussed the method of testability modeling and analysis and the method of model conversion. Finally, by using a PDU controller of momentum drive equipment of some airplane, it is validated that the methods are valid. At the same time, results show that the methods are feasible and effective in the design for PHM of modernized equipment.
基于多信号流图的可测试性建模与模型转换技术
随着系统复杂性、集成化和智能化水平的提高,预测与健康管理技术(PHM)得到了越来越多的重视和应用。该技术已成为提高复杂系统可靠性、可测试性、可维护性、可保障性和安全性的关键技术。这无疑对可测试性技术提出了更高的要求。可测试性建模和模型转换技术越来越受到产品设计者的重视,在可测试性设计中得到了广泛的应用。介绍了基于多信号流图的可测试性建模和模型转换技术。在阐述了可测试性模型的基本原理后,讨论了可测试性建模分析方法和模型转换方法。最后,以某型飞机动量驱动设备的PDU控制器为例,验证了所提方法的有效性。结果表明,该方法在现代化装备的PHM设计中是可行和有效的。
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