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首页> 外文期刊>Bulletin of the American Physical Society >APS -59th Annual Meeting of the APS Division of Plasma Physics - Event - Laboratory development and testing of spacecraft diagnostics
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APS -59th Annual Meeting of the APS Division of Plasma Physics - Event - Laboratory development and testing of spacecraft diagnostics

机译:APS-等离子体物理APS分部第59届年会-活动-航天器诊断的实验室开发和测试

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摘要

The Naval Research Laboratory's Space Chamber experiment is a large-scale laboratory device dedicated to the creation of large-volume plasmas with parameters scaled to realistic space plasmas. Such devices make valuable contributions to the investigation of space plasma phenomena under controlled, reproducible conditions, allowing for the validation of theoretical models being applied to space data. However, in addition to investigations such as plasma wave and instability studies, such devices can also make valuable contributions to the development and testing of space plasma diagnostics. One example is the plasma impedance probe developed at NRL. Originally developed as a laboratory diagnostic, the sensor has now been flown on a sounding rocket, is included on a CubeSat experiment, and will be included on the DoD Space Test Program's STP-H6 experiment on the International Space Station. In this talk, we will describe how the laboratory simulation of space plasmas made this development path possible.
机译:海军研究实验室的太空舱实验是一种大型实验室设备,专用于创建具有按实际空间等离子体缩放的参数的大体积等离子体。这样的设备为在受控的,可复制的条件下研究空间等离子体现象做出了宝贵的贡献,从而允许对应用于空间数据的理论模型进行验证。但是,除了诸如等离子波和不稳定性研究之类的研究之外,此类设备还可以为空间等离子诊断程序的开发和测试做出宝贵的贡献。一个例子是NRL开发的等离子阻抗探针。该传感器最初是作为实验室诊断工具开发的,现在已经在探空火箭上飞行,包括在CubeSat实验中,并将包括在国际空间站的DoD空间测试计划的STP-H6实验中。在本次演讲中,我们将描述空间等离子体的实验室模拟如何使这种发展道路成为可能。

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