paper-with-me

Papers

Variable-Horizon Guidance for Autonomous Rendezvous and Docking to a Tumbling Target

2021-07-15 · Mirko Leomanni, Renato Quartullo, Gianni Bianchini, Andrea Garulli, Antonio Giannitrapani

In this paper, the trajectory planning problem for autonomous rendezvous and docking between a controlled spacecraft and a tumbling target is addressed. The use of a variable planning horizon is proposed in order to construct an appropriate maneuver plan, within an optimization-based framework. The involved optimization problem is nonconvex and features nonlinear constraints. The main contribution is to show that such problem can be tackled effectively by solving a finite number of linear programs. To this aim, a specifically conceived horizon search algorithm is employed in combination with a polytopic constraint approximation technique. The resulting guidance scheme provides the ability to identify favourable docking configurations, by exploiting the time-varying nature of the optimization problem endpoint. Simulation results involving the capture of the nonoperational EnviSat spacecraft indicate that the method is able to generate optimal trajectories at a fraction of the computational cost incurred by a state-of-the-art nonlinear solver.

📄 PDF Abstract BibTeX arXiv:2107.07254

Code (0)

등록된 구현이 없습니다.

Tasks

Trajectory Planning

Similar Papers 제목 키워드 기반

Current state of the multi-agent multi-view experimental and digital twin rendezvous (MMEDR-Autonomous) framework

2026-03-21 · Logan Banker, Michael Wozniak, Mohanad Alameer, Smriti Nandan Paul 외 arxiv

As near-Earth resident space objects proliferate, there is an increasing demand for reliable technologies in applications of on-orbit servicing, debris removal, and orbit modification. Rendezvous and docking are critical…

Reinforcement LearningPose Estimation

Neural-based Control for CubeSat Docking Maneuvers

2024-10-16 · Matteo Stoisa, Federica Paganelli Azza, Luca Romanelli, Mattia Varile

Autonomous Rendezvous and Docking (RVD) have been extensively studied in recent years, addressing the stringent requirements of spacecraft dynamics variations and the limitations of GNC systems. This paper presents an in…

Reinforcement Learning (RL)

Imitation learning-based spacecraft rendezvous and docking method with Expert Demonstration

2026-01-19 · Shibo Shao, Dong Zhou, Guanghui Sun, Liwen Zhang 외 arxiv

Existing spacecraft rendezvous and docking control methods largely rely on predefined dynamic models and often exhibit limited robustness in realistic on-orbit environments. To address this issue, this paper proposes an …

An Autonomous, End-to-End, Convex-Based Framework for Close-Range Rendezvous Trajectory Design and Guidance with Hardware Testbed Validation

2026-02-12 · Minduli C. Wijayatunga, Julian Guinane, Nathan D. Wallace, Xiaofeng Wu arxiv

Autonomous satellite servicing missions must execute close-range rendezvous under stringent safety and operational constraints while remaining computationally tractable for onboard use and robust to uncertainty in sensin…

Sampling-based 3-D Line-of-Sight PWA Model Predictive Control for Autonomous Rendezvous and Docking with a Tumbling Target

2020-07-30 · Dongting Li, Rui-Qi Dong, Yanning Guo, Guangtao Ran 외

In this paper, a model predictive control (MPC) framework is employed to realize autonomous rendezvous and docking (AR&D) with a tumbling target, using the piecewise affine (PWA) model of the 3-D line-of-sight (LOS) dyna…

Model Predictive ControlPosition