ET-Class: An Energy Transfer-Based Classification of Space Debris Removal Methods and Missions

Author:

Yalçın Barış Can,Martinez Carol,Hubert Delisle Maxime,Rodriguez Gonzalo,Zheng James,Olivares-Mendez Miguel

Abstract

Space debris is positioned as a fatal problem for current and future space missions. Many effective space debris removal methods have been proposed in the past decade, and several techniques have been either tested on the ground or in parabolic flight experiments. Nevertheless, no uncooperative debris has been removed from any orbit until this moment. Therefore, to expand this research field and progressing the development of space debris removal technologies, this paper reviews and compares the existing technologies with past, present, and future methods and missions. Moreover, since one of the critical problems when designing space debris removal solutions is how to transfer the energy between the chaser/de-orbiting kit and target during the first interaction, this paper proposes a novel classification approach, named ET-Class (Energy Transfer Class). This classification approach provides an energy-based perspective to the space debris phenomenon by classifying how existing methods dissipate or store energy during the first contact.

Funder

Fonds National de La Recherche Luxembourg

Publisher

Frontiers Media SA

Reference184 articles.

1. The Active Space Debris Removal mission RemoveDebris. Part 2: In Orbit Operations;Aglietti;Acta Astronautica,2020

2. CNES Operational Practices for Space Debris Risk Limitation and protectionEnlarging the Scope of Space Applications;Alby;Acta Astronautica,1997

3. Relative Control of an Ion Beam shepherd Satellite Using the Impulse Compensation Thruster;Alpatov;Acta Astronautica,2018

4. Active Removal of Space Debris-Expanding Foam Application for Active Debris Removal;Andrenucci,2011

5. Space Debris Detection over Intersatellite Communication Signals;Anttonen;Acta Astronautica,2021

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