PMO OpenIR
theunifiedidealmodelofmeanmotionresonanceofartificialsatellitesduetogeopotentialperturbations
Zhang Mingjiang; Zhao Changyin; Xiong Yongqing; Sun Rongyu; Zhu Tinglei
2013
Source Publicationsciencechinaphysicsmechanicsastronomy
ISSN1674-7348
Volume56Issue:4Pages:840
AbstractFrom Kaula's Earth gravitational potential written in classical orbital elements, the unified ideal model of mean motion resonance of artificial satellites due to geopotential perturbations is developed in this paper first, through a suitable sequence of canonical transformations constructed by implicit functions. This unified ideal orbital resonance model is valid for all the commensurabilities between the rotational angular velocity of the Earth and the angular velocities of mean orbital motion of artificial satellites with arbitrary inclination and small eccentricity, and can be also transformed into Garfinkel's general expression of ideal resonance problem. Then 1/1 resonance of the 24-hour satellite with arbitrary inclination and small eccentricity is analyzed under the effect of harmonics of J_2 and J_(22) of the geopotential, based on the unified ideal model of mean motion resonance. The analytical expressions of the libration period and libration half width of the 1/1 resonance of the 24-hour satellite with arbitrary inclination and small eccentricity are presented.
Language英语
Document Type期刊论文
Identifierhttp://libir.pmo.ac.cn/handle/332002/29443
Collection中国科学院紫金山天文台
Affiliation中国科学院紫金山天文台
First Author Affilication中国科学院紫金山天文台
Recommended Citation
GB/T 7714
Zhang Mingjiang,Zhao Changyin,Xiong Yongqing,et al. theunifiedidealmodelofmeanmotionresonanceofartificialsatellitesduetogeopotentialperturbations[J]. sciencechinaphysicsmechanicsastronomy,2013,56(4):840.
APA Zhang Mingjiang,Zhao Changyin,Xiong Yongqing,Sun Rongyu,&Zhu Tinglei.(2013).theunifiedidealmodelofmeanmotionresonanceofartificialsatellitesduetogeopotentialperturbations.sciencechinaphysicsmechanicsastronomy,56(4),840.
MLA Zhang Mingjiang,et al."theunifiedidealmodelofmeanmotionresonanceofartificialsatellitesduetogeopotentialperturbations".sciencechinaphysicsmechanicsastronomy 56.4(2013):840.
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