卫星姿态对接收过渡层高频信号的影响:来自e-POP/Swarm-E机载无线电接收机的例子

E. C. K. Eyiguler, D. Danskin, G. Hussey, K. Pandey, Robert G. Gillies, A. Yau
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引用次数: 1

摘要

航天器上的天线所观察到的特性取决于接收天线和无线电波电场之间的几何形状。天线的视轴方向应与发射源的视距方向一致,才能完全解析波的偏振特性。然而,情况并非总是如此,特别是由于航天器方向的限制,航天器上的天线。因此,本研究的重点是天线方向对观测到的无线电波偏振特性的影响。Swarm-E(以前称为CAScade, Smallsat和电离层极地探测器- CASSIOPE)航天器的精确四元数和sp3轨道数据用于确定机载无线电接收仪器(RRI)的轴向,用于与NRCAN-Ottawa发射机(45.4oN, 75.6oW)协调实验。选取了2017年5月14日的回转目标和2017年8月11日的最低点两种不同姿态行为下的高频无线电波观测特征。为了解决无线电波的物理特性,应消除偶极子之间的角度和无线电波传播方向的影响。
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Satellite attitude effects on the reception of transionospheric HF signals: Examples from the Radio Receiver Instrument onboard e-POP/Swarm-E
The characteristics observed by an antenna onboard a spacecraft depend on the geometry between the receiving antenna and the electric fields of the radio wave. The antenna boresight direction should be along the transmitting source’s line-of-sight direction to be able to completely resolve the wave’s polarization characteristics. However, this is not always the case, especially for the antenna onboard a spacecraft due to the spacecraft orientation restrictions. Hence, in this study, the focus is on the antenna orientation effects on the observed polarization characteristics of the radio wave. Precise quaternion and sp3 orbit data of Swarm-E (formerly known as the CAScade, Smallsat, and Ionospheric Polar Explorer – CASSIOPE) spacecraft are used to determine the boresight of the Radio Receiver Instrument (RRI) onboard, for the coordinated experiments with the NRCAN-Ottawa transmitter (45.4oN, 75.6oW). The observed characteristics of the HF radio waves are determined for two selected cases with different attitude behavior: slew-to-target on 14 May 2017, and nadir mode on 11 August 2017. The effect of the angle between dipoles and radio wave propagation direction should be removed to resolve the physical characteristics of the wave.
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