Typed states for the displayed outbound observations.
Source: paper_references, paper_reference_links, observed 2026-06-29T14:14:58.355961Z
Paper Citation Record · LEDGER
As of 5 August 2026, this Paper Citation Record lists 38 of 38 outbound references and 0 inbound Pith citation observations for arXiv:2605.29021.
A citation records a reference. It does not transfer a finding from one paper to another.
Typed states for the displayed outbound observations.
Source: paper_references, paper_reference_links, observed 2026-06-29T14:14:58.355961Z
One-hop event checks from named stored sources.
Source: scholarly_work_events, retraction_status_cache, observed 2026-08-05T06:32:48.257954+00:00
Pith citing papers itemized under the disclosed page cap.
Source: paper_references, paper_reference_links
A source-named dated measurement, never combined with another source.
Source: cited_works
38 of 38 outbound references displayed
External citation measurements
No source-named external measurement is stored.
Observation 535944c2-4d3a-488a-a1d5-85f9aa07410e · outbound
Designing Active Tether-Net Systems for Space Debris Capture with Graph-Learning-Aided Mixed-Combinatorial Optimization Analysis and Consequences of the Irid- ium 33-Cosmos 2251 Collision,
Reference 1
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Unavailable: canonical work link unavailable.
Observation 4697fbb1-ee00-44b8-b521-7903560f6cc1 · outbound
Designing Active Tether-Net Systems for Space Debris Capture with Graph-Learning-Aided Mixed-Combinatorial Optimization A review and comparison of active space debris capturing and removal methods,
Reference 2
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Observation 12123fd5-115e-4acb-bb3e-72455205f66b · outbound
Designing Active Tether-Net Systems for Space Debris Capture with Graph-Learning-Aided Mixed-Combinatorial Optimization Robustness and safety of net-based debris capture under deployment and environmental uncertainties,
Reference 3
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Observation 0eab38ee-efc3-4c81-98ca-6e327be7759a · outbound
Designing Active Tether-Net Systems for Space Debris Capture with Graph-Learning-Aided Mixed-Combinatorial Optimization Dynamic computation of a tether-net system capturing a space target via discrete elastic rods and an energy-conserving integrator,
Reference 4
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Observation 48913e27-3837-4655-8181-a3126bfa0ed4 · outbound
Designing Active Tether-Net Systems for Space Debris Capture with Graph-Learning-Aided Mixed-Combinatorial Optimization Contact dynamic analysis of tether-net system for space debris capture using incremental potential formulation,
Reference 5
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Observation e15f002c-3a13-4d02-b7ac-4f49568a0bf6 · outbound
Designing Active Tether-Net Systems for Space Debris Capture with Graph-Learning-Aided Mixed-Combinatorial Optimization Approach modeling and control of an autonomous maneuverable space net,
Reference 6
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Observation 35736fd7-b545-4b99-a74f-dd044f5a841a · outbound
Designing Active Tether-Net Systems for Space Debris Capture with Graph-Learning-Aided Mixed-Combinatorial Optimization Impulsive super-twisting sliding mode control for space debris capturing via tethered space net robot,
Reference 7
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Observation 3f3e504f-754a-49d7-b889-b80037ea1f5f · outbound
Designing Active Tether-Net Systems for Space Debris Capture with Graph-Learning-Aided Mixed-Combinatorial Optimization Learning constrained corner node trajectories of a tether net system for space debris capture,
Reference 8
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Observation 8ac6f8a6-9865-4b32-96e2-4cbc370715f7 · outbound
Designing Active Tether-Net Systems for Space Debris Capture with Graph-Learning-Aided Mixed-Combinatorial Optimization Learning-aided control of robotic tether-net with maneuverable nodes to capture large space debris,
Reference 9
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Observation 8ac75e6c-b96c-4570-9453-1d3cc48c9b80 · outbound
Designing Active Tether-Net Systems for Space Debris Capture with Graph-Learning-Aided Mixed-Combinatorial Optimization Multi-debris capture by tethered space net robot via redeployment and assembly,
Reference 10
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Observation e39fc208-ba76-423b-b090-94624cb11f6c · outbound
Designing Active Tether-Net Systems for Space Debris Capture with Graph-Learning-Aided Mixed-Combinatorial Optimization Surrogate-aided learning of active tether-net maneuver to capture rotating space debris,
Reference 11
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Unavailable: canonical work link unavailable.
Observation 3f5af3e9-e75d-44c4-b13a-e0c56cfa24bb · outbound
Designing Active Tether-Net Systems for Space Debris Capture with Graph-Learning-Aided Mixed-Combinatorial Optimization Mixed integer programming modeling for the satellite three-dimensional com- ponent assignment and layout optimization problem,
Reference 12
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Unavailable: canonical work link unavailable.
Observation 05604db7-438f-466a-9699-067bbcf741ae · outbound
Designing Active Tether-Net Systems for Space Debris Capture with Graph-Learning-Aided Mixed-Combinatorial Optimization On the time transformation of mixed integer optimal control problems using a consistent fixed integer control function,
Reference 13
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Unavailable: canonical work link unavailable.
Observation 2b80ce70-4aa9-43b0-ae9a-180990274a9f · outbound
Designing Active Tether-Net Systems for Space Debris Capture with Graph-Learning-Aided Mixed-Combinatorial Optimization A Comprehensive Survey on Graph Neural Networks
Reference 14
Source-reported events for the cited work
No event found in the named queried sources as of 2026-08-05T06:32:48.257954+00:00.
Observation b5a91d06-cd91-4a03-bd61-c94db84926e8 · outbound
Designing Active Tether-Net Systems for Space Debris Capture with Graph-Learning-Aided Mixed-Combinatorial Optimization Attention is all you need,
Reference 15
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Unavailable: canonical work link unavailable.
Observation 636fb1cf-764a-4bc6-9f18-cae65b252a52 · outbound
Designing Active Tether-Net Systems for Space Debris Capture with Graph-Learning-Aided Mixed-Combinatorial Optimization Solve routing problems with a residual edge-graph attention neural network,
Reference 16
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Unavailable: canonical work link unavailable.
Observation 63e73188-196c-49c9-ba2c-1c48767324b6 · outbound
Designing Active Tether-Net Systems for Space Debris Capture with Graph-Learning-Aided Mixed-Combinatorial Optimization Learning scalable policies over graphs for multi-robot task allocation using capsule attention net- works,
Reference 17
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Unavailable: canonical work link unavailable.
Observation 36ec445a-5891-440c-a8a8-505e74b9866c · outbound
Designing Active Tether-Net Systems for Space Debris Capture with Graph-Learning-Aided Mixed-Combinatorial Optimization Learning to allocate time-bound and dynamic tasks to multiple robots using covariant attention neural net- works,
Reference 18
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Unavailable: canonical work link unavailable.
Observation 6462d237-58f5-4df7-b063-865f8695765b · outbound
Designing Active Tether-Net Systems for Space Debris Capture with Graph-Learning-Aided Mixed-Combinatorial Optimization Augmenting optimization-based molecular design with graph neural networks,
Reference 19
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Unavailable: canonical work link unavailable.
Observation 3f1dfe73-619c-4b85-be9f-225ba94af77d · outbound
Designing Active Tether-Net Systems for Space Debris Capture with Graph-Learning-Aided Mixed-Combinatorial Optimization Efficient de- sign optimization over mixed-combinatorial spaces enabled by graph- learning,
Reference 20
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Observation 4cc7a444-6294-4862-aeb7-2c6e35aaf24c · outbound
Designing Active Tether-Net Systems for Space Debris Capture with Graph-Learning-Aided Mixed-Combinatorial Optimization Graph convolutional networks: a comprehensive review,
Reference 21
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Observation 89f11685-ac81-45c0-a2b2-580f620e5b22 · outbound
Designing Active Tether-Net Systems for Space Debris Capture with Graph-Learning-Aided Mixed-Combinatorial Optimization Graph attention networks,
Reference 22
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Unavailable: canonical work link unavailable.
Observation 81960984-6e7f-4cc6-9072-9557f3305586 · outbound
Designing Active Tether-Net Systems for Space Debris Capture with Graph-Learning-Aided Mixed-Combinatorial Optimization Graph capsule convolutional neural net- works,
Reference 23
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Observation 017c96b9-3a5a-4cb6-a8aa-2db397b8d133 · outbound
Designing Active Tether-Net Systems for Space Debris Capture with Graph-Learning-Aided Mixed-Combinatorial Optimization On the simulation of tether-nets for space debris capture with V ortex Dynamics,
Reference 24
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Unavailable: canonical work link unavailable.
Observation 779138d4-8014-4f81-9f8a-9e4f2cd11d29 · outbound
Designing Active Tether-Net Systems for Space Debris Capture with Graph-Learning-Aided Mixed-Combinatorial Optimization Simulation of tether-nets for capture of space debris and small asteroids,
Reference 25
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Unavailable: canonical work link unavailable.
Observation f966a986-f027-43eb-8be6-688d4fc2252e · outbound
Designing Active Tether-Net Systems for Space Debris Capture with Graph-Learning-Aided Mixed-Combinatorial Optimization A mission concept for removing multiple debris using formation-flying slingshot spacecraft,
Reference 26
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Unavailable: canonical work link unavailable.
Observation 55830b8e-2ca2-4b91-a65f-43da8f88f807 · outbound
Designing Active Tether-Net Systems for Space Debris Capture with Graph-Learning-Aided Mixed-Combinatorial Optimization Active debris removal simulations using spider-web space-nets for kitsat-1 satellite,
Reference 27
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Unavailable: canonical work link unavailable.
Observation 248705f6-eac5-44fa-8515-fc2b59903704 · outbound
Designing Active Tether-Net Systems for Space Debris Capture with Graph-Learning-Aided Mixed-Combinatorial Optimization Concurrent design optimization of tether-net system and actions for reliable space-debris capture,
Reference 28
Source-reported events for the cited work
No event found in the named queried sources as of 2026-08-05T06:32:48.257954+00:00.
Observation 8f20fef1-7472-4c4c-b5f2-701df4a8ab79 · outbound
Designing Active Tether-Net Systems for Space Debris Capture with Graph-Learning-Aided Mixed-Combinatorial Optimization State- of-the-art small spacecraft technology 2024,
Reference 29
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Unavailable: canonical work link unavailable.
Observation b6701c2a-a901-438f-88cf-a8c60323f739 · outbound
Designing Active Tether-Net Systems for Space Debris Capture with Graph-Learning-Aided Mixed-Combinatorial Optimization Ecaps 5n hpgp thruster brochure,
Reference 30
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Observation 2c5d8211-3b4d-45d9-8a5b-144f6223b21d · outbound
Designing Active Tether-Net Systems for Space Debris Capture with Graph-Learning-Aided Mixed-Combinatorial Optimization 5n low throughput (lt) thruster,
Reference 31
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Observation 6cf3f2d9-aa44-4ed2-bc3a-7e0ef35dde3c · outbound
Designing Active Tether-Net Systems for Space Debris Capture with Graph-Learning-Aided Mixed-Combinatorial Optimization Deployment and Capture Dynamics of Tether-Nets for Active Space Debris Removal,
Reference 32
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Observation dedd42bf-0acd-4932-82cf-3f6425b74271 · outbound
Reference 33
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Observation 151aec28-336e-4c8f-b362-6f7f40454e10 · outbound
Designing Active Tether-Net Systems for Space Debris Capture with Graph-Learning-Aided Mixed-Combinatorial Optimization A gentle introduction to graph neural networks,
Reference 34
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Observation ff743446-c27d-467b-9bee-e959f8996032 · outbound
Designing Active Tether-Net Systems for Space Debris Capture with Graph-Learning-Aided Mixed-Combinatorial Optimization Graph laplacians and least squares on graphs,
Reference 35
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Observation 8e4c5735-3045-441e-a5f9-09c7eff986fe · outbound
Designing Active Tether-Net Systems for Space Debris Capture with Graph-Learning-Aided Mixed-Combinatorial Optimization A mixed- discrete particle swarm optimization algorithm with explicit diversity- preservation,
Reference 36
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Observation 20df8ad1-52fc-4f59-b968-347923a862a8 · outbound
Designing Active Tether-Net Systems for Space Debris Capture with Graph-Learning-Aided Mixed-Combinatorial Optimization A multi-objective mixed- discrete particle swarm optimization with multi-domain diversity preser- vation,
Reference 37
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Observation 51dd0c3b-75dc-4f55-b6ed-ceae2e500767 · outbound
Designing Active Tether-Net Systems for Space Debris Capture with Graph-Learning-Aided Mixed-Combinatorial Optimization Data and video repository for the paper – designing active tether-net system for space debris capture with graph learning aided mixed-combinatorial optimization,
Reference 38
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Unavailable: canonical work link unavailable.
No inbound Pith citation observations are available.