Analytical Approach for Orbital Evasion with Space Geometry Considered

This paper researches an optimal problem of orbital evasion with considering space geometry by using an analytical approach. Firstly, an angles-only relative navigation model is built and the definition of completely nonobservable maneuver is proposed. After algebraic analysis of relative space geom...

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Main Authors: Dateng Yu, Hua Wang, Shuai Guo, Hongyu Wang
Format: Article
Language:English
Published: Hindawi Limited 2017-01-01
Series:International Journal of Aerospace Engineering
Online Access:http://dx.doi.org/10.1155/2017/4164260
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spelling doaj-894843482138464b8ae0d4f3bfc110232020-11-24T23:07:36ZengHindawi LimitedInternational Journal of Aerospace Engineering1687-59661687-59742017-01-01201710.1155/2017/41642604164260Analytical Approach for Orbital Evasion with Space Geometry ConsideredDateng Yu0Hua Wang1Shuai Guo2Hongyu Wang3College of Aerospace Science and Engineering, National University of Defense Technology, Changsha, ChinaCollege of Aerospace Science and Engineering, National University of Defense Technology, Changsha, ChinaCollege of Aerospace Science and Engineering, National University of Defense Technology, Changsha, ChinaAerospace System Engineering Shanghai, Shanghai 200000, ChinaThis paper researches an optimal problem of orbital evasion with considering space geometry by using an analytical approach. Firstly, an angles-only relative navigation model is built and the definition of completely nonobservable maneuver is proposed. After algebraic analysis of relative space geometry, it is proved that the completely nonobservable maneuver is nonexistent. Based on this, the angle measurements of orbit without evasion are set as reference measurements and an analytical solution is derived to find the minimum difference between measurements and the reference measurements in a constant measuring time. Then, an object function using vector multiplication is designed and an optimization model is established so as to prove the optimality of analytical solution. At last, several numerical simulations are performed with different maneuver directions, which verify the effectiveness of the analytical method of this paper for orbital evasion problem. This method offers a new viewpoint for orbital evasion problem.http://dx.doi.org/10.1155/2017/4164260
collection DOAJ
language English
format Article
sources DOAJ
author Dateng Yu
Hua Wang
Shuai Guo
Hongyu Wang
spellingShingle Dateng Yu
Hua Wang
Shuai Guo
Hongyu Wang
Analytical Approach for Orbital Evasion with Space Geometry Considered
International Journal of Aerospace Engineering
author_facet Dateng Yu
Hua Wang
Shuai Guo
Hongyu Wang
author_sort Dateng Yu
title Analytical Approach for Orbital Evasion with Space Geometry Considered
title_short Analytical Approach for Orbital Evasion with Space Geometry Considered
title_full Analytical Approach for Orbital Evasion with Space Geometry Considered
title_fullStr Analytical Approach for Orbital Evasion with Space Geometry Considered
title_full_unstemmed Analytical Approach for Orbital Evasion with Space Geometry Considered
title_sort analytical approach for orbital evasion with space geometry considered
publisher Hindawi Limited
series International Journal of Aerospace Engineering
issn 1687-5966
1687-5974
publishDate 2017-01-01
description This paper researches an optimal problem of orbital evasion with considering space geometry by using an analytical approach. Firstly, an angles-only relative navigation model is built and the definition of completely nonobservable maneuver is proposed. After algebraic analysis of relative space geometry, it is proved that the completely nonobservable maneuver is nonexistent. Based on this, the angle measurements of orbit without evasion are set as reference measurements and an analytical solution is derived to find the minimum difference between measurements and the reference measurements in a constant measuring time. Then, an object function using vector multiplication is designed and an optimization model is established so as to prove the optimality of analytical solution. At last, several numerical simulations are performed with different maneuver directions, which verify the effectiveness of the analytical method of this paper for orbital evasion problem. This method offers a new viewpoint for orbital evasion problem.
url http://dx.doi.org/10.1155/2017/4164260
work_keys_str_mv AT datengyu analyticalapproachfororbitalevasionwithspacegeometryconsidered
AT huawang analyticalapproachfororbitalevasionwithspacegeometryconsidered
AT shuaiguo analyticalapproachfororbitalevasionwithspacegeometryconsidered
AT hongyuwang analyticalapproachfororbitalevasionwithspacegeometryconsidered
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