Orbital elements ephemerides and interfaces design of LEO satellites

Low earth orbit satellites, with unique advantages, are prosperous types of navigation augmentation satellites for the GNSS satellites constellations. The broadcast ephemeris element needs to be designed as an important index of the augmented LEOs. The GPS ephemerides of 16/18 elements cannot be dir...

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Main Authors: FANG Shanchuan, DU Lan, GAO Yunpeng, ZHOU Peiyuan, LIU Zejun
Format: Article
Language:zho
Published: Surveying and Mapping Press
Series:Acta Geodaetica et Cartographica Sinica
Subjects:
Online Access:http://html.rhhz.net/CHXB/html/2019-2-198.htm
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spelling doaj-9d11ff9475254c2c9dd66281319cc6c02020-11-25T01:07:29ZzhoSurveying and Mapping PressActa Geodaetica et Cartographica Sinica1001-15951001-159548219820610.11947/j.AGCS.2019.201707012019020701Orbital elements ephemerides and interfaces design of LEO satellitesFANG Shanchuan0DU Lan1GAO Yunpeng2ZHOU Peiyuan3LIU Zejun4Technical Department of Taiyuan Satellite Launch Center, Taiyuan 030027, ChinaInformation Engineering University, Zhengzhou 450001, ChinaInformation Engineering University, Zhengzhou 450001, ChinaInformation Engineering University, Zhengzhou 450001, ChinaInformation Engineering University, Zhengzhou 450001, ChinaLow earth orbit satellites, with unique advantages, are prosperous types of navigation augmentation satellites for the GNSS satellites constellations. The broadcast ephemeris element needs to be designed as an important index of the augmented LEOs. The GPS ephemerides of 16/18 elements cannot be directly applied to the LEOs because of the poor fitting accuracies in along-track positional component. Besides, the ill-conditioned problem of the normal-matrix exists in fitting algorithm due to the small eccentricity of the LEO orbits. Based on the nonsingular orbital elements, 5 sets of ephemerides with element numbers from 16 to 19 were designed respectively by adding or modifying orbital elements magnifying the along-track and radial positional components. The fitting experiments based on the LEO of 300 to 1500 km altitudes show that the fitting UREs of the proposed 16/17/18/18<sup>*</sup>/19-element ephemerides are better than 10/6/4/5/2.5 cm, respectively. According to the dynamical range of the fitting elements, the interfaces were designed for the 5 sets of ephemerides. The effects of data truncation on fitting UREs are at millimeter level. The total bits are 329/343/376/379/396, respectively. 29/15 bits are saved for the 16/17-element ephemerides compared with the GPS16 ephemeris, while 64/61/41 bits can be saved for the 18/18<sup>*</sup>/19-element ephemerides compared with the GPS18 elements ephemeris.http://html.rhhz.net/CHXB/html/2019-2-198.htmLEO satellitesbroadcast ephemerisnonsingular orbital elements of the first kindquantization unit
collection DOAJ
language zho
format Article
sources DOAJ
author FANG Shanchuan
DU Lan
GAO Yunpeng
ZHOU Peiyuan
LIU Zejun
spellingShingle FANG Shanchuan
DU Lan
GAO Yunpeng
ZHOU Peiyuan
LIU Zejun
Orbital elements ephemerides and interfaces design of LEO satellites
Acta Geodaetica et Cartographica Sinica
LEO satellites
broadcast ephemeris
nonsingular orbital elements of the first kind
quantization unit
author_facet FANG Shanchuan
DU Lan
GAO Yunpeng
ZHOU Peiyuan
LIU Zejun
author_sort FANG Shanchuan
title Orbital elements ephemerides and interfaces design of LEO satellites
title_short Orbital elements ephemerides and interfaces design of LEO satellites
title_full Orbital elements ephemerides and interfaces design of LEO satellites
title_fullStr Orbital elements ephemerides and interfaces design of LEO satellites
title_full_unstemmed Orbital elements ephemerides and interfaces design of LEO satellites
title_sort orbital elements ephemerides and interfaces design of leo satellites
publisher Surveying and Mapping Press
series Acta Geodaetica et Cartographica Sinica
issn 1001-1595
1001-1595
description Low earth orbit satellites, with unique advantages, are prosperous types of navigation augmentation satellites for the GNSS satellites constellations. The broadcast ephemeris element needs to be designed as an important index of the augmented LEOs. The GPS ephemerides of 16/18 elements cannot be directly applied to the LEOs because of the poor fitting accuracies in along-track positional component. Besides, the ill-conditioned problem of the normal-matrix exists in fitting algorithm due to the small eccentricity of the LEO orbits. Based on the nonsingular orbital elements, 5 sets of ephemerides with element numbers from 16 to 19 were designed respectively by adding or modifying orbital elements magnifying the along-track and radial positional components. The fitting experiments based on the LEO of 300 to 1500 km altitudes show that the fitting UREs of the proposed 16/17/18/18<sup>*</sup>/19-element ephemerides are better than 10/6/4/5/2.5 cm, respectively. According to the dynamical range of the fitting elements, the interfaces were designed for the 5 sets of ephemerides. The effects of data truncation on fitting UREs are at millimeter level. The total bits are 329/343/376/379/396, respectively. 29/15 bits are saved for the 16/17-element ephemerides compared with the GPS16 ephemeris, while 64/61/41 bits can be saved for the 18/18<sup>*</sup>/19-element ephemerides compared with the GPS18 elements ephemeris.
topic LEO satellites
broadcast ephemeris
nonsingular orbital elements of the first kind
quantization unit
url http://html.rhhz.net/CHXB/html/2019-2-198.htm
work_keys_str_mv AT fangshanchuan orbitalelementsephemeridesandinterfacesdesignofleosatellites
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AT gaoyunpeng orbitalelementsephemeridesandinterfacesdesignofleosatellites
AT zhoupeiyuan orbitalelementsephemeridesandinterfacesdesignofleosatellites
AT liuzejun orbitalelementsephemeridesandinterfacesdesignofleosatellites
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