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Using ATE simulation to develop test procedures and verify testability for the STANDARD missile

机译:使用ATE仿真制定测试程序并验证STANDARD导弹的可测试性

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The STANDARD Missile (SM) program has historically used traditional methods to develop new automatic test equipment (ATE). The test equipment (TE) hardware was built and then came the long, difficult task of developing test software. The Navy needs a better way to develop the next generation of TE. This paper describes how ATE simulation should be used throughout the lifecycle of the program to accelerate development schedules and reduce overall costs. Simulation models are widely used in developing complex missile hardware but not for developing ATE hardware. Using ATE simulation models in conjunction with missile simulation models would provide the following capabilities: develop test procedures without the need for expensive ATE and missile hardware; find testability problems before the missile or ATE hardware is bui develop and verify built-in-test (BIT); verify missile and ATE changes throughout missile production; determine why ATE testing did not find problems causing flight failures.
机译:标准导弹(SM)程序在历史上一直使用传统方法来开发新的自动测试设备(ATE)。构建了测试设备(TE)硬件,然后完成了开发测试软件的艰巨而艰巨的任务。海军需要一种更好的方式来开发下一代TE。本文介绍了如何在程序的整个生命周期中使用ATE仿真,以加快开发进度并降低总体成本。仿真模型被广泛用于开发复杂的导弹硬件,但并未用于开发ATE硬件。将ATE仿真模型与导弹仿真模型结合使用将提供以下功能:无需昂贵的ATE和导弹硬件即可开发测试程序;在制造导弹或ATE硬件之前发现可测试性问题;开发和验证内置测试(BIT);在整个导弹生产过程中核实导弹和ATE的变化;确定为什么ATE测试没有发现引起飞行故障的问题。

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