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Simulation of the high-degree lithospheric field recovery for the Swarm constellation of satellites

机译:卫星群的高空岩石圈场恢复的模拟

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A primary objective of the Swarm constellation mission is to resolve the lithospheric magnetic field with the best achievable accuracy in order to bridge the spectral gap between satellite and airborne/marine magnetic sur-veys. In a series of end-to-end simulations, the possibilities of high degree field recovery were investigated. The proposed constellation consists of a higher and a lower pair of satellites. It was soon found that a constellation as such does not yet guarantee improved high degree field recovery. Of crucial importance is the orbit constellation of the lower pair of satellites. If the lower satellites follow each other, as investigated in Constellation 1, the gain of a constellation turns out to be marginal, compared to a single satellite. For Constellation 2, the lower satellites were separated in the E/W direction. In this setup, one can use the instantaneous E/W magnetic field gradient between the satellites, as well as the N/S along track gradients. Incorporating this vector gradient information results in significantly improved field resolution. Indeed, the final simulation suggests that the envisaged Swarm constellation will enable the recovery of the lithospheric field to beyond spherical harmonic degree 130.
机译:Swarm星座任务的主要目标是以最佳可达到的精度解决岩石圈磁场,以弥合卫星与机载/海洋磁测量之间的频谱差距。在一系列的端到端模拟中,研究了高场恢复的可能性。所建议的星座由一对较高和较低的卫星组成。很快发现,这样的星座还不能保证改进的高场恢复率。至关重要的是下面一对卫星的轨道星座。如果较低的卫星彼此跟随(如“星座1”中所述),那么与单个卫星相比,星座的增益将是很小的。对于星座2,较低的卫星沿E / W方向分离。在这种设置中,可以使用卫星之间的瞬时E / W磁场梯度以及沿轨道梯度的N / S。合并该矢量梯度信息可显着提高场分辨率。确实,最终的模拟表明,设想的Swarm星座将使岩石圈场的恢复超过球谐度130。

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