Comparison of modified Woo’s solar phase scintillation model with ESA’s BepiColombo superior solar conjunction measurement data for X-band and Ka-band

Author:

Chen Shun-PingORCID,Villalvilla Jose

Abstract

AbstractSolar phase scintillation is of major interest in deep space mission operations for designing a communications system capable of transmitting signals when the path is close to the Sun, but also for improving the navigation under these conditions. The basis of this work is Woo’s solar phase scintillation theory which reported a useful model for the spectral power density of phase scintillations of a signal traveling through a medium close to the Sun. In this paper, Woo’s solar phase scintillation formula is used for the simulation of the spectral density of phase fluctuations induced by the Sun on coherent signals (uplink and downlink carriers are coherently related by a fractional ratio implemented by the spacecraft’s transponder), for the two downlink frequency bands supported by the ESA deep space mission BepiColombo. In particular, the model has been compared to measurement data collected at low Sun Earth Probe (SEP) angles during the superior solar conjunction campaign in March 2021 (in its cruise phase to Mercury). The comparison shows a good match between the phase noise spectral densities of the modified formula and measurement data, therefore, confirming that the formula can be used for the planning and verification of the future near Sun measurements.

Funder

Hochschule Darmstadt

Hochschule Darmstadt University of Applied Sciences

Publisher

Springer Science and Business Media LLC

Subject

Space and Planetary Science,Aerospace Engineering

Reference8 articles.

1. Woo, R.: Multifrequency techniques for studying interplanetary scintillations. Astrophys J 201, 238–248 (1975)

2. Woo, R.: Radial dependence of solar wind properties deduced from Helios 1/2 and Pioneer 10/11 radio scattering observations. Astrophys J 219, 727–739 (1978)

3. Woo, R., Armstrong, J.W.: Spacecraft radio scattering observation of the power spectrum of electron density fluctuations in the solar wind. J Geophys Res 84, A12 (1979)

4. DSMS Telecommunications Link Design Handbook, 810-005, Rev. E, 34-m and 70-m Telemetry Reception (2003)

5. Gardner, F.. M.: Phaselock Techniques, third Wiley, New York (2005)

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