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Global Gravity Field Model from Taiji-1

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Abstract Taiji-1 is the first technology demonstration satellite of the Taiji program of China's space-borne gravitational wave antenna. After the demonstration of the key individual technologies, Taiji-1 continues collecting the data of the precision orbit determinations, the satellite attitudes, and the non-conservative forces exerted on the S/C. Therefore, during its free-fall, Taiji-1 can be viewed as operating in the high-low satellite-to-satellite tracking mode of a gravity recovery mission. In this work, one month data from Taiji-1's observations have been selected and the techniques are developed to resolve the long term interruptions and disturbances in the measurement data due to the scheduled technology demonstration experiments. The first global gravity model TJGM-r1911, that independently derived from China's own satellite mission, is successfully built from Taiji-1's observations. Compared with gravity models from CHAMP and other satellite gravity missions, the accuracy discrepancies exist, which is mainly caused by the data discontinuity problem. As the approved extended free-falling phase with minimal disruptions and disturbances, Taiji-1 will serve as the first gravity mission satellite for China since 2022 and it will provide us the independent measurement of both the static and the monthly time-variable global gravity field.
Title: Global Gravity Field Model from Taiji-1
Description:
Abstract Taiji-1 is the first technology demonstration satellite of the Taiji program of China's space-borne gravitational wave antenna.
After the demonstration of the key individual technologies, Taiji-1 continues collecting the data of the precision orbit determinations, the satellite attitudes, and the non-conservative forces exerted on the S/C.
Therefore, during its free-fall, Taiji-1 can be viewed as operating in the high-low satellite-to-satellite tracking mode of a gravity recovery mission.
In this work, one month data from Taiji-1's observations have been selected and the techniques are developed to resolve the long term interruptions and disturbances in the measurement data due to the scheduled technology demonstration experiments.
The first global gravity model TJGM-r1911, that independently derived from China's own satellite mission, is successfully built from Taiji-1's observations.
Compared with gravity models from CHAMP and other satellite gravity missions, the accuracy discrepancies exist, which is mainly caused by the data discontinuity problem.
As the approved extended free-falling phase with minimal disruptions and disturbances, Taiji-1 will serve as the first gravity mission satellite for China since 2022 and it will provide us the independent measurement of both the static and the monthly time-variable global gravity field.

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