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Passive radio sounding to correct for Europa's ionospheric distortion of VHF signals

机译:被动无线电听起来纠正欧罗巴的VHF信号的电离层畸变

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The dispersive effect of Europa's ionosphere on radio wave propagation is detrimental to the quality of radar observations for altimetry and geodesy of Europa's surface, as it creates pulse broadening and signal delay. While using the relative delay between two active radar channels of different center frequencies is a common method to correct for this ionospheric distortion, the High Frequency (HF) active band for a dual-frequency radar sounder like the Radar for Europa Assessment and Sounding: Ocean to Near-surface (REASON) is susceptible to being dominated by the bursts of Jupiter's radio emissions when the radar is on the sub-Jovian side. At these times, the HF radar will be severely degraded or unusable alongside the slightly dispersed Very High Frequency (VHF) channel for performing radar sounding as well as reference-based radar corrections of ionospheric distortion for VHF altimetry. To address this, we assess the potential to use Jupiter's radio emissions to correct for ionospheric distortion with a passive radio sounding approach that has been developed on Earth to estimate the thickness of ice sheets using the Sun. With REASON as an interesting test case for the technique, we discuss in general the abilities and requirements for a dual-frequency radar system using a passive HF radar alongside an active VHF radar to correct for ionospheric distortion, and we compare the passive mode's performance to that of an active HF radar system. Finally, we show that even in the presence of the maximum expected total electron content (TEC) in Europa's ionosphere, the passive radar approach, using the REASON HF as a receive-only instrument, not only corrects for dispersion but also performs at a level similar to that of an active HF system in terms of TEC estimation and VHF range error reduction.
机译:欧罗巴电离层对无线电波传播的分散效果对欧罗巴表面的高度测量和大地测量的雷达观测的质量有害,因为它产生脉冲扩大和信号延迟。在使用不同中心频率的两个有源雷达通道之间的相对延迟的同时是校正该电离层失真的常见方法,用于双频雷达测绘器的高频(HF)活动带,如欧罗巴评估和发声的雷达:海洋近表面(原因)容易受到雷达在亚爪侧的爆发时由木星的无线电排放的爆发。在这些时间,HF雷达将严重降级或不可用作略微分散的非常高频(VHF)通道,用于执行雷达探测以及VHF高度偏移的电离层变形的基于参考雷达校正。为了解决这个问题,我们评估了利用木星的无线电排放来纠正电离层畸变的可能性无线电探测方法,这些方法已经在地球上开发,以估计使用太阳的冰盖的厚度。具有推理作为该技术的有趣测试用例,我们一般讨论了双频雷达系统的能力和要求,使用无源HF雷达沿着有源VHF雷达校正电离层失真,我们将被动模式的性能进行比较活跃的HF雷达系统。最后,我们表明即使在欧罗巴电离层的最高预期总电子含量(TEC)的情况下,无源雷达方法,使用HF作为仅接收仪器的原因,不仅可以校正色散,而且在水平下执行与TEC估计和VHF范围误差减少的Active HF系统类似。

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