Displaced Electric Sail Orbits Design and Transition Trajectory Optimization

Displaced orbits for spacecraft propelled by electric sails are investigated as an alternative to the use of solar sails. The orbital dynamics of electric sails based spacecraft are studied within a spherical coordinate system, which permits finding the solutions of displaced electric sail orbits an...

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Main Authors: Naiming Qi, Mingying Huo, Qiufan Yuan
Format: Article
Language:English
Published: Hindawi Limited 2014-01-01
Series:Mathematical Problems in Engineering
Online Access:http://dx.doi.org/10.1155/2014/932190
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spelling doaj-2d6976b1bfaf40dc994e657aca428d222020-11-24T22:49:14ZengHindawi LimitedMathematical Problems in Engineering1024-123X1563-51472014-01-01201410.1155/2014/932190932190Displaced Electric Sail Orbits Design and Transition Trajectory OptimizationNaiming Qi0Mingying Huo1Qiufan Yuan2Department of Aerospace Engineering, Harbin Institute of Technology, Harbin 150006, ChinaDepartment of Aerospace Engineering, Harbin Institute of Technology, Harbin 150006, ChinaDepartment of Aerospace Engineering, Harbin Institute of Technology, Harbin 150006, ChinaDisplaced orbits for spacecraft propelled by electric sails are investigated as an alternative to the use of solar sails. The orbital dynamics of electric sails based spacecraft are studied within a spherical coordinate system, which permits finding the solutions of displaced electric sail orbits and optimize transfer trajectory. Transfer trajectories from Earth's orbit to displaced orbit are also studied in an optimal framework, by using genetic algorithm and Gauss pseudospectral method. The initial guesses for the state and control histories used in the Gauss pseudospectral method are interpolated from the best solution of a genetic algorithm. Numerical simulations show that the electric sail is able to perform the transfer from Earth’s orbit to displaced orbit in acceptable time, and the hybrid optimization method has the capability to search the feasible and optimal solution without any initial value guess.http://dx.doi.org/10.1155/2014/932190
collection DOAJ
language English
format Article
sources DOAJ
author Naiming Qi
Mingying Huo
Qiufan Yuan
spellingShingle Naiming Qi
Mingying Huo
Qiufan Yuan
Displaced Electric Sail Orbits Design and Transition Trajectory Optimization
Mathematical Problems in Engineering
author_facet Naiming Qi
Mingying Huo
Qiufan Yuan
author_sort Naiming Qi
title Displaced Electric Sail Orbits Design and Transition Trajectory Optimization
title_short Displaced Electric Sail Orbits Design and Transition Trajectory Optimization
title_full Displaced Electric Sail Orbits Design and Transition Trajectory Optimization
title_fullStr Displaced Electric Sail Orbits Design and Transition Trajectory Optimization
title_full_unstemmed Displaced Electric Sail Orbits Design and Transition Trajectory Optimization
title_sort displaced electric sail orbits design and transition trajectory optimization
publisher Hindawi Limited
series Mathematical Problems in Engineering
issn 1024-123X
1563-5147
publishDate 2014-01-01
description Displaced orbits for spacecraft propelled by electric sails are investigated as an alternative to the use of solar sails. The orbital dynamics of electric sails based spacecraft are studied within a spherical coordinate system, which permits finding the solutions of displaced electric sail orbits and optimize transfer trajectory. Transfer trajectories from Earth's orbit to displaced orbit are also studied in an optimal framework, by using genetic algorithm and Gauss pseudospectral method. The initial guesses for the state and control histories used in the Gauss pseudospectral method are interpolated from the best solution of a genetic algorithm. Numerical simulations show that the electric sail is able to perform the transfer from Earth’s orbit to displaced orbit in acceptable time, and the hybrid optimization method has the capability to search the feasible and optimal solution without any initial value guess.
url http://dx.doi.org/10.1155/2014/932190
work_keys_str_mv AT naimingqi displacedelectricsailorbitsdesignandtransitiontrajectoryoptimization
AT mingyinghuo displacedelectricsailorbitsdesignandtransitiontrajectoryoptimization
AT qiufanyuan displacedelectricsailorbitsdesignandtransitiontrajectoryoptimization
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