Integrated design of ranging and DOR signal for China's deep space navigation

Author:

Xu Dezhen1,Huang Lei1,Chen Shaowu1

Affiliation:

1. Beijing Institute of Tracking and Telecommunications Technology , Beijing 100094 , China

Abstract

Abstract An integrated ranging and differential one-way range (DOR) signal design is implemented. The design utilizes the regenerative pseudo-noise ranging scheme and one pair of dedicated DOR tones for the deep space United X Band system. To demonstrate its effectiveness, it was applied to China’s Tianwen-1 orbiter and compared with the classic and normal designs. Using the link budget and error analysis methods, the measurement accuracy and communication ability were assessed. Results show that the novel design achieves better performance compared with that of the classic and normal designs. In the applied case, the power efficiency improved by > 30 % \gt 30 \% , two-way ranging precision improved from 0.50 to 0.09 m, and the two-way Doppler precision improved by 20% compared with those of the classic one. In addition, the spacecraft thermal noise during Delta-DOR measurements was slightly reduced. Owing to the higher downlink residual carrier, the supported telemetry data rate increased by 50%. Compared with the normal one, a higher downlink residual carrier (by 0.35 dB) was achieved by the novel design and resulted in slightly better ranging and Doppler accuracies. The novel design has a good technical foundation and is expected to be adopted in China’s future lunar and deep space explorations.

Publisher

Walter de Gruyter GmbH

Subject

Space and Planetary Science,Astronomy and Astrophysics

Reference22 articles.

1. CCSDS. Pseudo-Noise (PN) Ranging Systems, CCSDS 414.0-G-2. 2014. Available from: https://public.ccsds.org/Pubs/414x0g2.pdf.

2. CCSDS. Delta-DOR-Technical Characteristics and Performance, CCSDS 500.1-G-2. 2019. Available from: https://public.ccsds.org/Pubs/500x1g2.pdf.

3. CCSDS. Radio Frequency and Modulation Systems-Part 1: Earth Stations and Spacecraft, CCSDS 401.0-B-31. 2021. Available from: https://public.ccsds.org/Pubs/401x0b32.pdf.

4. CCSDS. Pseudo-Noise (PN) Ranging Systems, CCSDS 414.1-B-3. 2022. Available from: https://public.ccsds.org/Pubs/414x1b3.pdf.

5. Curkendall DW, Border JS. 2013. Delta-DOR: The one-nanoradian navigation measurement system of the deep space network–History, architecture, and componentry, PN Progress Report 42-193. Jet Propulsion Laboratory, California Institute of Technology.

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