创新和能力的MAGnetometers (MAGIC) 技术演示有效载荷
David M Miles1, Amanda Lasko1, Scott Bounds1
1Department of Physics and Astronomy, The University of Iowa, Iowa City, IA USA.
概括
创新和能力的MAGnetometers (MAGIC) 仪器将在飞行中演示用于太空飞行应用的新型低噪音流门磁力计芯. 这项技术旨在取代传统的核心,并在TRACERS任务中验证新的设计,包括Tesseract.
科学领域:
- 空间物理 空间物理
- 仪器技术 仪器技术 仪器技术
- 磁力学测量是一种磁力学测量.
背景情况:
- 传统的Infinetics S1000流门磁力仪芯的供应正在减少,这将影响未来的太空飞行任务.
- 需要新的流门磁力仪芯,以确保在太空中持续进行现场磁场测量.
研究的目的:
- 为了展示飞行,爱荷华大学开发了新的低噪音流门磁力计芯.
- 为了验证新的流门核心设计的性能与空间环境中的现有技术相比.
主要方法:
- 创新和能力的MAGnetometers (MAGIC) 仪器被整合到Tandem重新连接和Cusp电动力学侦察卫星 (TRACERS) 任务中.
- 两种不同的传感器设计进行了飞行:一种具有向后兼容的1"环芯,另一种采用了新的Tesseract赛道几何核心.
- 技术演示磁力计与科学磁力计一起安装,用于直接在飞行中的比较和验证.
主要成果:
- MAGIC仪器在飞行中成功展示了新的流门磁力计核心技术.
- 新芯的飞行验证是通过直接比较与TRACERS科学磁力计进行的.
- 引入并测试了使用赛道几何核心的Tesseract传感器设计.
结论:
- 新的低噪音流门磁力仪芯适用于太空飞行应用.
- MAGIC仪器为替换传统磁力计芯提供了一个可行的途径.
- TRACERS任务成功验证了用于未来太空探索的先进磁力测量技术.
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