Performance Analysis of Ranging Techniques for the KPLO Mission

Author:

Park SungjoonORCID,Moon Sangman

Abstract

In this study, the performance of ranging techniques for the Korea Pathfinder Lunar Orbiter (KPLO) space communication system is investigated. KPLO is the first lunar mission of Korea, and pseudo-noise (PN) ranging will be used to support the mission along with sequential ranging. We compared the performance of both ranging techniques using the criteria of accuracy, acquisition probability, and measurement time. First, we investigated the end-to-end accuracy error of a ranging technique incorporating all sources of errors such as from ground stations and the spacecraft communication system. This study demonstrates that increasing the clock frequency of the ranging system is not required when the dominant factor of accuracy error is independent of the thermal noise of the ranging technique being used in the system. Based on the understanding of ranging accuracy, the measurement time of PN and sequential ranging are further investigated and compared, while both techniques satisfied the accuracy and acquisition requirements. We demonstrated that PN ranging performed better than sequential ranging in the signal-to-noise ratio (SNR) regime where KPLO will be operating, and we found that the T2B (weighted-voting balanced Tausworthe, voting v = 2) code is the best choice among the PN codes available for the KPLO mission.

Publisher

The Korean Space Science Society

Subject

General Earth and Planetary Sciences,General Physics and Astronomy

Reference16 articles.

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2. Berner JB, Bryant SH, Operations comparison of deep space ranging types: Sequential tone vs. pseudo-noise, Proceedings of the 2002 IEEE Aerospace Conference, Big Sky, MT, 9-16 Mar 2002. 10.1109/AERO.2002.1035264

3. Berner JB, Bryant SH, Kinman PW, Range measurement as practiced in the deep space network, Proc. IEEE 95, 2202-2214 (2007). 10.1109/JPROC.2007.905128

4. Boscagli G, Holsters P, Vassallo E, Visintin M, PN regenerative ranging and its compatibility with telecommand and telemetry signals, Proc. IEEE 95, 2224-2234 (2007). 10.1109/JPROC.2007.905186

5. CCSDS (The Consultative Committee for Space Data Systems), Pseudo-Noise (PN) ranging systems, CCSDS 414.1-B-2, Blue Book (2014). https://public.ccsds.org/Pubs/414x1b2. pdf

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