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Flight control system design factors for applying automated testing techniques

机译:应用自动测试技术的飞行控制系统设计因素

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The principal design features and operational experiences of the X-29 forward-swept-wing aircraft and F-18 high alpha research vehicle (HARV) automated test systems are discussed. It is noted that operational experiences in developing and using these automated testing techniques have highlighted the need for incorporating target system features to improve testability. Improved target system testability can be accomplished with the addition of nonreal-time and real-time features. Online access to target system implementation details, unobtrusive real-time access to internal user-selectable variables, and proper software instrumentation are all desirable features of the target system. Also, test system and target system design issues must be addressed during the early stages of the target system development. Processing speeds of up to 20 million instructions/s and the development of high-bandwidth reflective memory systems have improved the ability to integrate the target system and test system for the application of automated testing techniques. It is concluded that new methods of designing testability into the target systems are required.
机译:讨论了X-29前掠翼飞机和F-18高阿尔法研究飞行器(HARV)自动化测试系统的主要设计特征和操作经验。应当指出,开发和使用这些自动测试技术的操作经验突显了需要结合目标系统功能以提高可测试性。可以通过添加非实时和实时功能来提高目标系统的可测试性。在线访问目标系统的实现细节,对内部用户可选变量的实时访问以及适当的软件工具都是目标系统的理想功能。此外,必须在目标系统开发的早期阶段解决测试系统和目标系统设计问题。高达2000万条指令/秒的处理速度以及高带宽反射式内存系统的发展提高了集成目标系统和测试系统以应用自动化测试技术的能力。结论是,需要在目标系统中设计可测试性的新方法。

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