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Neural operator learns collision-free spacecraft swarm trajectories · 2 sources tracked

Researchers have developed a novel neural operator that can plan collision-free trajectories for large swarms of spacecraft. This operator maps spacecraft, target, and debris distributions to trajectories in a single forward pass, significantly outperforming classical methods in scalability and speed. Trained on a small number of spacecraft, it generalizes to swarms of up to 1,000, matching the accuracy of optimal-control solvers while better evading threats in congested orbits. AI

IMPACT This research offers a scalable and efficient AI-driven solution for managing complex spacecraft operations in increasingly crowded orbital environments.

RANK_REASON The cluster contains an academic paper detailing a new method for trajectory planning.

Read on arXiv cs.MA (Multiagent) →

AI-generated summary · Google Gemini · from 2 sources. How we write summaries →

Neural operator learns collision-free spacecraft swarm trajectories · 2 sources tracked

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0 / 100
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Research
The cluster contains an academic paper detailing a new method for trajectory planning.
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2 independent sources
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paper, model release
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High
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25 days old
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COVERAGE [2]

  1. arXiv cs.LG TIER_1 English(EN) · Sidhdharth D. Sikka, Suyi Gao, Zehui Lu, Rongjie Lai, Shaoshuai Mou ·

    Neural operator learning for collision-aware trajectory planning of spacecraft swarms

    arXiv:2608.00320v1 Announce Type: new Abstract: Autonomous spacecraft swarms must plan fuel-efficient, collision-free maneuvers in increasingly congested orbits, yet classical trajectory optimization scales poorly as pairwise safety constraints multiply with swarm size, and learn…

  2. arXiv cs.MA (Multiagent) TIER_1 English(EN) · Shaoshuai Mou ·

    Neural operator learning for collision-aware trajectory planning of spacecraft swarms

    Autonomous spacecraft swarms must plan fuel-efficient, collision-free maneuvers in increasingly congested orbits, yet classical trajectory optimization scales poorly as pairwise safety constraints multiply with swarm size, and learning-based planners rarely transfer across swarm …