Spacecraft avoid frequent orbital debris collisions due to vast orbital volumes and tracking systems
Spacecraft successfully avoid frequent orbital debris collisions owing to tracking databases, surveillance systems, and active trajectory planning within vast orbital environments.
The claim addresses two primary mechanisms by which spacecraft manage orbital debris hazards: the large volume of space and active tracking/avoidance systems. Papers [0], [1], and [4] directly support the role of tracking systems and collision avoidance maneuvers in maintaining spacecraft safety in orbit. No provided papers refute the claim.
Karla Raigoza, Timothy Sands. Autonomous Trajectory Generation Comparison for De-Orbiting with Multiple Collision Avoidance. 2022. https://doi.org/10.3390/s22187066
Discusses autonomous trajectory maneuvers and collision avoidance techniques used by spacecraft to mitigate the growing hazard of space debris.
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Khaja Faisal Hussain, Kathiravan Thangavel, A. Gardi, R. Sabatini. Passive Electro-Optical Tracking of Resident Space Objects for Distributed Satellite Systems Autonomous Navigation. 2023. https://doi.org/10.3390/rs15061714
Highlights the importance of ground-based and space-based tracking of resident space objects to accomplish collision avoidance maneuvers in distributed satellite systems.
Ao Jin, Fan Zhang, Ganghui Shen, Yifeng Ma, Panfeng Huang. A Learning-Based Scheme for Safe Deployment of Tethered Space Robot. 2025. https://doi.org/10.1109/TAES.2024.3480893
Focuses on motion planning and collision avoidance schemes for safely managing interactions with space debris.
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