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A radiation hardened digital fluxgate magnetometer for space applications

机译:防辐射数字磁通门磁力计,用于太空应用

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Space-based measurements of Earth's magnetic field are required to understand the plasma processes responsible for energising particles in the Van Allen radiation belts and influencing space weather. This paper describes a prototype fluxgate magnetometer instrument developed for the proposed Canadian Space Agency's (CSA) Outer Radiation Belt Injection, Transport, Acceleration and Loss Satellite (ORBITALS) mission and which has applications in other space and suborbital applications. The magnetometer is designed to survive and operate in the harsh environment of Earth's radiation belts and measure low-frequency magnetic waves, the magnetic signatures of current systems, and the static background magnetic field. The new instrument offers improved science data compared to its predecessors through two key design changes direct digitisation of the sensor and digital feedback from two cascaded pulse-width modulators combined with analog temperature compensation. These provide an increase in measurement bandwidth up to 450 Hz with the potential to extend to at least 1500 Hz. The instrument can resolve 8 pT on a 65 000 nT field with a magnetic noise of less than 10 pT/√Hz at 1 Hz. This performance is comparable with other recent digital fluxgates for space applications, most of which use some form of sigma-delta (ΣΔ) modulation for feedback and omit analog temperature compensation. The prototype instrument was successfully tested and calibrated at the Natural Resources Canada Geomagnetics Laboratory.
机译:需要对地球磁场进行基于空间的测量,以了解负责为范艾伦辐射带中的粒子供能并影响太空天气的等离子体过程。本文介绍了为拟议中的加拿大航天局(CSA)外辐射带注入,运输,加速和损失卫星(ORBITALS)任务开发的磁通门磁力计仪器原型,该仪器已在其他空间和亚轨道应用中使用。磁力计旨在在恶劣的地球辐射带环境中生存和运行,并测量低频电磁波,电流系统的磁信号和静态背景磁场。与之前的产品相比,该新仪器通过两次关键的设计更改对传感器进行了直接数字化,并通过两个级联脉宽调制器的数字反馈与模拟温度补偿相结合,提供了改进的科学数据。这些功能可将测量带宽提高到450 Hz,并有可能至少扩展到1500 Hz。该仪器可在65 000 nT的磁场上分辨8 pT的磁场,在1 Hz时的磁噪声小于10 pT / Hz。该性能可与其他最新的用于空间应用的数字磁通门相媲美,其中大多数数字磁通门使用某种形式的sigma-delta(Σ&)调制进行反馈,并省略了模拟温度补偿。原型仪器已在加拿大自然资源部地磁实验室成功测试和校准。

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