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Cable Effects Study: Tangents, Rabbit Holes, Dead Ends, and Valuable Results

机译:电缆效果研究:切线,兔子洞,死角和有价值的结果

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Lessons learned during a study on the effects that electrical power and signal wiring harness cables introduce on the dynamic response of precision spacecraft is presented, along with the most significant results. The study was a three year effort to discover a set of practical approaches for updating well-defined dynamic models of harness-free structures where knowledge of the cable type, position, and tie-down method are known. Although cables are found on every satellite, the focus was on precision, low damping, and very flexible structures. Obstacles encountered, classified as tangents, rabbit holes, and dead ends, offer practical lessons for structural dynamics research. The paper traces the historical, experiential progression of the project, describing how the obstacles affected the project. First, methods were developed to estimate cable properties. Problems were encountered because of the flexible, highly damped nature of cables. Abeam was used as a test article to validate experimentally derived cable properties and to refine the assumptions regarding boundary conditions. A spacecraft bus-like panel with cables attached was designed, and finite element models were developed and validated through experiment. Various paths were investigated at each stage before a consistent test and analysis methodology was developed.
机译:介绍了在研究电力和信号线束电缆对精密航天器的动力响应的影响过程中吸取的教训,并得出了最有意义的结果。这项研究历时三年,旨在发现一套实用的方法,用于更新无线束结构的明确定义的动力学模型,其中已知电缆类型,位置和束缚方法的知识。尽管在每颗卫星上都有电缆,但重点是精度,低阻尼和非常灵活的结​​构。遇到的障碍(分类为切线,兔子洞和死角)为结构动力学研究提供了实用的课程。该论文追溯了该项目的历史,经验进展,描述了障碍如何影响该项目。首先,开发了估算电缆性能的方法。由于电缆具有柔性,高阻尼特性,因此遇到了问题。 Abeam用作测试产品,以验证通过实验得出的电缆特性并完善有关边界条件的假设。设计了一个带有电缆的航天飞机般的面板,并通过实验开发并验证了有限元模型。在开发出一致的测试和分析方法之前,每个阶段都要研究各种途径。

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