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A new method to determine the gravity field of small bodies from line-of-sight acceleration data 被引量:1

A new method to determine the gravity field of small bodies from line-of-sight acceleration data
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摘要 We present a new method to derive line-of-sight acceleration observables from spacecraft radio tracking data. The observables can be used to estimate the mass and gravity of a natural satellite as a spacecraft flyby. The corresponding observation model adapts to one-way and two/three-way tracking modes. As a test case for method validation and application, we estimated the mass and degree two gravity field for the Martian moon Phobos using simulated tracking data when the spacecraft Mars Express flew by Phobos on 2013 December 29. We have a few real tracking data during flyby and they will be used to confirm raw data simulation. The main purpose of this paper is to demonstrate the method of line-of-sight acceleration reduction from raw tracking data and the feasibility to estimate mass and gravity of a natural satellite using this type of observable. This novel method is potentially applicable to planet and asteroid gravity field studies combined with Doppler tracking data. We present a new method to derive line-of-sight acceleration observables from spacecraft radio tracking data. The observables can be used to estimate the mass and gravity of a natural satellite as a spacecraft flyby. The corresponding observation model adapts to one-way and two/three-way tracking modes. As a test case for method validation and application, we estimated the mass and degree two gravity field for the Martian moon Phobos using simulated tracking data when the spacecraft Mars Express flew by Phobos on 2013 December 29. We have a few real tracking data during flyby and they will be used to confirm raw data simulation. The main purpose of this paper is to demonstrate the method of line-of-sight acceleration reduction from raw tracking data and the feasibility to estimate mass and gravity of a natural satellite using this type of observable. This novel method is potentially applicable to planet and asteroid gravity field studies combined with Doppler tracking data.
出处 《Research in Astronomy and Astrophysics》 SCIE CAS CSCD 2019年第3期155-164,共10页 天文和天体物理学研究(英文版)
基金 supported by the National Natural Science Foundation of China (Nos. U1531136, U1831132 and U1531104) Innovation Group of Natural Fund of Hubei Province(2018CFA087) Open Funding of Macao University of Science and Technology (FDCT 119/2017/A3) Open Funding of Guizhou Provincial Key Laboratory of Radio Astronomy and Data Processing (KF201813)
关键词 line of SIGHT acceleration-Doppler-celestial MECHANICS line of sight acceleration Doppler celestial mechanics
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