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STRUCTURAL TESTING OF HIGH VALUE TEST ARTICLES: INTEGRATED RISK MITIGATION IN VIBRATION TEST SYSTEMS

机译:高价值试验文章的结构测试:振动测试系统中的综合风险缓解

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Structural testing and model verification are necessities in the development of high-value spacecrafts and components. Testing of such items using electrodynamic shaker systems is meticulously planned to avoid any accidental damage. Similarly, the controller and amplifiers used to drive the shakers must be capable of mitigating risk by safely responding to unplanned vibration excursions during a test, as well as to issues with the test system itself, or with facility resources such as electrical power. For example, what happens if the amplifier power source fails, or the network connecting the controller to the command PC goes down? External factors such as these are unpredictable, but careful consideration during vibration test system design makes it is possible for the system to handle such events reliably and minimize risk of damage. Recent advancements in technology have resulted in the design of a complete test system that stresses risk mitigation. The status of building power, safety interlocks, and other critical subsystems are continuously monitored by the controller. A failure on any of the critical subsystems will immediately trigger the controller to ramp down the sine sweep over a prescribed duration. The rate at which the controller reacts to an abort signal is critical. For example, if amplifier power loss is experienced during a sine sweep, the controller must be able to ramp down the drive and stop the test smoothly. Similarly, the amplifier needs stored backup power for the ramp down. These features protect the test article from any transients by preventing the shaker from abruptly stopping. This paper will investigate such safety concerns in structural testing of high value test articles, and the test system considerations associated with them.
机译:结构测试和模型验证是高价值航天器和组件开发的必要性。使用电动振动器系统测试这些物品的核心计划以避免任何意外损坏。类似地,用于驱动振动器的控制器和放大器必须能够通过在测试期间安全地响应计划的振动偏移,以及测试系统本身的问题,或者使用电力等设施资源来缓解风险。例如,如果放大器电源发生故障,或将控制器连接到命令PC的网络会发生什么?外部因素如这些是不可预测的,但在振动测试系统设计期间仔细考虑使得系统可以使系统可靠地处理此类事件并最大限度地减少损坏的风险。技术的最新进步导致了一个完整的测试系统,强调风险缓解。由控制器连续监控构建电源,安全互锁和其他关键子系统的状态。任何关键子系统的故障都将立即触发控制器在规定的持续时间内延长正弦扫描。控制器对中止信号的反应的速率至关重要。例如,如果在正弦扫描期间经历放大器电源损耗,则控制器必须能够斜坡驱动器并平滑地停止测试。同样,放大器需要将升降功率存储在斜坡上。这些功能通过防止振动筛突然停止,保护测试制品免受任何瞬变。本文将研究高价值试验文章的结构测试中的这种安全问题,以及与它们相关的测试系统考虑因素。

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