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首页> 外文期刊>Instrumentation & Measurement Magazine, IEEE >A testbed for implementing prognostic methodologies on cryogenic propellant loading systems
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A testbed for implementing prognostic methodologies on cryogenic propellant loading systems

机译:在低温推进剂装载系统上实施预后方法的试验台

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Prognostic technology determines the health state of a system and estimates its remaining useful life. With this information, operators can make decisions on how to operate the system such that it minimizes life cycle cost and maximizes safety. The individual decisions can range from changes to control settings to scheduling future operations or to determining the best repair and maintenance activities. Fault injection experiments on test beds that represent key subsystems are critical for the maturation of both the sub-systems themselves as well as the prognostic technology. It is necessary to precisely emulate actual fault conditions to maximize the utility for validation of hardware and software. Representative of such a test environment, we present here the development of a testbed for pneumatic valves, which are used in cryogenic propellant loading systems. The pneumatic valve testbed allows for the injection of magnitude-varying leaks that follow specified damage progression profiles in order to emulate the evolution (on a compressed time scale) of common valve faults. Besides the various leakage faults, the testbed also allows exploration of battery degradation on the operation of the valves. Experimental results and progress towards the maturation and validation of component-level prognostic methods are discussed in the context of cryogenic refueling operations.
机译:预后技术确定系统的健康状态并估计其剩余使用寿命。有了这些信息,操作员就可以决定如何操作系统,从而最大程度地降低生命周期成本并提高安全性。各个决策的范围从更改到控制设置到安排将来的操作或确定最佳的维修和保养活动。在代表关键子系统的测试台上进行故障注入实验对于子系统本身以及预测技术的成熟至关重要。有必要精确模拟实际故障状况,以最大程度地利用硬件和软件进行验证。这种测试环境的代表,我们在此介绍用于低温推进剂装载系统的气动阀测试台的开发。气动阀试验台允许按照规定的破坏进展曲线注入随强度变化的泄漏,以模拟常见阀故障的演变(在压缩的时间尺度上)。除了各种泄漏故障外,测试台还可以探讨电池在阀门操作过程中的退化情况。在低温加油操作的背景下,讨论了实验结果以及组件级预后方法的成熟和验证方面的进展。

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