| Article ID | Journal | Published Year | Pages | File Type | 
|---|---|---|---|---|
| 8131723 | Advances in Space Research | 2018 | 50 Pages | 
Abstract
												To rapidly design low-thrust trajectories between coplanar orbits for the orbit transfer and rendezvous problems, an analytic shape-based approach is proposed. Unlike all of the existing analytic shape-based approaches, the trajectory is divided into two phases. The finite Fourier series functions are employed to shape each phase of the trajectories. As a result, the fitting performance for the transfer and rendezvous trajectories by using the proposed method is improved. Consequently, the proposed approach can provide solutions with less fuel consumption and smaller maximum thrust acceleration. In addition, the trajectory safety is also ensured by the proposed method. The effectiveness of the proposed approach is validated by extensive numerical simulations.
											Keywords
												
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													Physical Sciences and Engineering
													Earth and Planetary Sciences
													Space and Planetary Science
												
											Authors
												Kui Zeng, Baolin Wu, Yunhai Geng, 
											