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Experimental Determination of the Dynamic Behavior of a Multifunctional Power Structure

机译:多功能电源结构动态行为的实验确定

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摘要

A main aim of spacecraft design is cost reduction that can either be achieved by reducing the cost of the spacecraft or by lowering the cost to launch. One proposed technology to reduce the mass and therefore lower the launch costs is the multifunctional power structure concept that incorporates the secondary spacecraft power supply into the load carrying structure. Here a short introduction of the dynamic analysis and optimization of such a structure is presented. The manufacture and testing of a multifunctional power panel is discussed in detail and its dynamic response is compared to a conventional honeycomb panel. The multifunctional design successfully combined the structural and power storage functions. It provided a similar dynamic response to conventional spacecraft structures and improved the energy density.
机译:航天器设计的主要目的是降低成本,这可以通过降低航天器的成本或降低发射成本来实现。减少重量并因此降低发射成本的一项提议技术是多功能动力结构概念,该概念将辅助航天器电源合并到了承载结构中。这里简要介绍了这种结构的动态分析和优化。详细讨论了多功能配电板的制造和测试,并将其动态响应与常规蜂窝板进行了比较。多功能设计成功地将结构和蓄电功能结合在一起。它提供了与常规航天器结构类似的动态响应,并提高了能量密度。

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