A Cloud-Based Automatic Test System for Civil Aircraft Ground Function Health Management

Xuhui Li, Chenyang Su, Y. Tong, Jinsong Yu
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Abstract

At present, the development of the test process design process for civil aircraft mainly relies on the process personnel to manually review relevant test information and write test process documents, which results in low efficiency of test process development and cannot effectively guarantee the standardization and normalization of process documents. The development of technology has made the unit under test more complicated, which lengthens the functional test cycle, and cannot meet the actual needs of current product production and maintenance. This paper proposes the research based on the Automatic Test Markup Language (IEEE 1671 ATML) and the Signal and Test Definition (IEEE-1641 STD), and builds an automated integrated test system that meets the requirements of automated integrated testing of domestic civil aircraft ground functions. Among them, the development and management of integrated test cases have realized the inheritability, reusability and sharing of test cases; the secondary packaging drive technology of test resources realizes multi-variable and multi-channel online real-time monitoring; the machine based on interface control files It supports bus protocol management and test operation, and realizes the flexible configuration of bus communication protocol in the test process.
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基于云的民机地面功能健康管理自动测试系统
目前民机试验工艺设计流程的制定主要依靠工艺人员手工查阅相关试验信息,编写试验工艺文件,导致试验工艺制定效率低,不能有效保证工艺文件的标准化、规范化。技术的发展使被测单元更加复杂,延长了功能测试周期,不能满足当前产品生产和维修的实际需要。本文提出了基于自动测试标记语言(IEEE 1671 ATML)和信号与测试定义(IEEE 1641 STD)的研究,构建了满足国内民用飞机地面功能自动化集成测试要求的自动化集成测试系统。其中,集成测试用例的开发和管理实现了测试用例的可继承性、可重用性和共享性;测试资源二次封装驱动技术实现了多变量、多通道的在线实时监控;该机基于接口控制文件,支持总线协议管理和测试操作,实现了测试过程中总线通信协议的灵活配置。
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