Abstract
“Tianqin” is a space-borne gravitational wave detection project proposed by Sun Yat-sen University recently. The project requires three drag-free spacecraft to observe a specific gravitational wave source, J0806.3 + 1527, for a minimum of 5 years in the “3 months on + 3 months off” scheme. The spacecraft will need to make orbital maneuvers in three out of every 6 months to meet the orbital stability requirements of the observations. To reduce the fuel consumption and extend the orbital lifespan, this study combines the homotopic approach, a fixed-step integration with both switching and mode detection, to solve the dual-mode propulsion optimization problem of the fuel-optimal index. Preliminary numerical simulation results verify that dual-mode propulsion with the combination of the cold gas thruster and radio-frequency ion thruster can significantly reduce the fuel consumption compared to the use of only a single cold gas thruster. The research also qualitatively summarizes the necessary conditions for each thruster to make a considerable contribution to the orbital maneuver in dual-mode propulsion under the fuel-optimal index. All these research results provide prospective reference data for Tianqin's future design of detailed thruster parameters for multi-mode propulsion.
| Original language | English |
|---|---|
| Pages (from-to) | 271-284 |
| Number of pages | 14 |
| Journal | Acta Astronautica |
| Volume | 238 |
| DOIs | |
| State | Published - Jan 2026 |
Keywords
- Dual-mode propulsion
- Fuel-optimal
- Homotopic approach
- Multi-mode propulsion
- Tianqin
- Trajectory optimization
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