Typed states for the displayed outbound observations.
Source: paper_references, paper_reference_links, observed 2026-08-01T16:11:40.247272Z
Paper Citation Record · LEDGER
As of 7 August 2026, this Paper Citation Record lists 47 of 47 outbound references and 0 inbound Pith citation observations for arXiv:2607.18115.
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 2026-08-01T16:11:40.247272Z
One-hop event checks from named stored sources.
Source: scholarly_work_events, retraction_status_cache, observed 2026-08-07T06:34:17.273281+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
47 of 47 outbound references displayed
External citation measurements
No source-named external measurement is stored.
Observation 7c64246a-6553-4326-94b6-49fe8e0179c6 · outbound
Compositional Semantic Communication for Physical AI: Category Theory Meets Game Theory Temporal windows of integration for multisensory wireless systems as enablers of physical ai,
Reference 1
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Observation 0e21fa4a-4263-4582-8a79-57c9a59ddab2 · outbound
Compositional Semantic Communication for Physical AI: Category Theory Meets Game Theory A joint learning and communications framework for federated learning over wireless networks,
Reference 2
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Observation 31495dc4-6548-4ea7-bb4b-ebd63792cd87 · outbound
Compositional Semantic Communication for Physical AI: Category Theory Meets Game Theory A review of applications in federated learning,
Reference 3
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Observation 7396beb2-e024-461e-a8fe-410b7ff4971d · outbound
Compositional Semantic Communication for Physical AI: Category Theory Meets Game Theory 6g networks: Beyond shannon towards semantic and goal-oriented communications,
Reference 4
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Observation 059b4a09-9ce5-4831-995b-529d771e2d70 · outbound
Compositional Semantic Communication for Physical AI: Category Theory Meets Game Theory Semantics-empowered communication for networked intelligent systems,
Reference 5
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Observation ffe17381-d0f0-4c42-933f-879ec06661bf · outbound
Compositional Semantic Communication for Physical AI: Category Theory Meets Game Theory Less Data, More Knowledge: Building Next Generation Semantic Communication Networks,
Reference 6
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Observation 2f11255b-6425-453c-920d-14f4ac7cf484 · outbound
Compositional Semantic Communication for Physical AI: Category Theory Meets Game Theory Rethinking modern communication from semantic coding to semantic communication,
Reference 7
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Observation 744b9da8-9faf-4045-ae70-037ab7e9cce9 · outbound
Compositional Semantic Communication for Physical AI: Category Theory Meets Game Theory Latent Space Align- ment for Semantic Channel Equalization,
Reference 8
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Observation 4f2d8392-ac74-4819-a245-2a88b8db173c · outbound
Compositional Semantic Communication for Physical AI: Category Theory Meets Game Theory Frame-Based Zero-Shot Semantic Channel Equalization for AI-Native Communications
Reference 9
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Observation 860984f2-6687-43bb-b468-52c5c7bf5637 · outbound
Compositional Semantic Communication for Physical AI: Category Theory Meets Game Theory Semantic channel equalizer: Modelling language mismatch in multi-user semantic communications,
Reference 10
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Observation 75ec55b0-9bc7-4e8d-a7da-14051ae0bdbe · outbound
Compositional Semantic Communication for Physical AI: Category Theory Meets Game Theory Semantic channel equalization strategies for deep joint source-channel coding,
Reference 11
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Observation 15ad53fa-9739-4a5a-a86b-7daf87d3ac4c · outbound
Compositional Semantic Communication for Physical AI: Category Theory Meets Game Theory Soft partitioning of latent space for semantic channel equalization,
Reference 12
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Observation fb7e2b3a-d332-4b1e-8c2a-284fc28b08a1 · outbound
Compositional Semantic Communication for Physical AI: Category Theory Meets Game Theory Learning network sheaves for ai-native semantic communi- cation,
Reference 13
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Observation 4145e344-d29e-4202-aedf-fae8bc9268b0 · outbound
Compositional Semantic Communication for Physical AI: Category Theory Meets Game Theory A Theory of Semantic Commu- nication,
Reference 14
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Observation ecd60dd3-0ef1-43ef-b784-06b66fc40a68 · outbound
Compositional Semantic Communication for Physical AI: Category Theory Meets Game Theory Resource allocation for text semantic communications,
Reference 15
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Observation 7a95c988-6fdb-4386-8a11-c862b8aac882 · outbound
Compositional Semantic Communication for Physical AI: Category Theory Meets Game Theory Performance optimization for semantic communications: An attention- based reinforcement learning approach,
Reference 16
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Observation 12cf3581-2613-4906-a927-cddc6524d69f · outbound
Compositional Semantic Communication for Physical AI: Category Theory Meets Game Theory Task-Oriented Multi- User Semantic Communications ,
Reference 17
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Observation bb50c981-e735-42c2-8097-486a852baf32 · outbound
Compositional Semantic Communication for Physical AI: Category Theory Meets Game Theory Non-orthogonal multiple access enhanced multi-user semantic communication,
Reference 18
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Observation 08575bfb-52af-4031-9604-4334f56ef1b7 · outbound
Compositional Semantic Communication for Physical AI: Category Theory Meets Game Theory Toward semantic communication protocols: A probabilistic logic perspective,
Reference 19
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Observation b0753363-1014-4bd6-a6f0-1bd1a56cd871 · outbound
Compositional Semantic Communication for Physical AI: Category Theory Meets Game Theory Swin transformer-based dynamic semantic communication for multi-user with different computing capacity,
Reference 20
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Observation b87e5efa-bbad-402e-9254-1c44d994d71e · outbound
Compositional Semantic Communication for Physical AI: Category Theory Meets Game Theory Neuromorphic wireless cognition: Event-driven semantic communications for remote inference,
Reference 21
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Observation 9776b30a-4473-4dd0-8b11-ee1ada2d1cf8 · outbound
Compositional Semantic Communication for Physical AI: Category Theory Meets Game Theory Collaborative semantic communication for edge inference ,
Reference 22
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Observation fa51bd9a-1155-45c6-85ca-43f0a1f0a547 · outbound
Compositional Semantic Communication for Physical AI: Category Theory Meets Game Theory Neuro-Symbolic Causal Reasoning Meets Signaling Game for Emergent Semantic Communications,
Reference 23
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Observation a1329b3e-f444-4b2e-8ebd-2b0b61dff42e · outbound
Compositional Semantic Communication for Physical AI: Category Theory Meets Game Theory Causal Semantic Communication for Digital Twins: A Generalizable Imitation Learning Approach,
Reference 24
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Observation dfff2b9a-4be8-466f-ae50-4006069fb51b · outbound
Compositional Semantic Communication for Physical AI: Category Theory Meets Game Theory Causal Abstraction Learning based on the Semantic Embedding Principle
Reference 25
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Observation 6d3158ef-7e9f-4636-8074-a3d577f81bdb · outbound
Compositional Semantic Communication for Physical AI: Category Theory Meets Game Theory Learning consistent causal abstraction networks,
Reference 26
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Observation fafb6cb5-d33d-43bf-904c-db13eda4a6f6 · outbound
Compositional Semantic Communication for Physical AI: Category Theory Meets Game Theory A Survey on Compositional Learning of AI Models: Theoretical and Experimental Practices
Reference 27
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Observation e8c948dd-793f-4fa7-81d2-932184ce35e3 · outbound
Compositional Semantic Communication for Physical AI: Category Theory Meets Game Theory Predictive learning enables compositional representations,
Reference 28
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Observation f41651d6-d497-4dca-ba93-b13b198eea3e · outbound
Compositional Semantic Communication for Physical AI: Category Theory Meets Game Theory The role of fibration symmetries in geometric deep learning,
Reference 29
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Observation c3de7377-2eb1-4bcf-8e93-823e217c4ed6 · outbound
Compositional Semantic Communication for Physical AI: Category Theory Meets Game Theory Th ´eorie des topos et Cohomologie Etale des Sch ´emas ,
Reference 30
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Observation cc2370f7-ea54-44b5-ae79-821f56ba53d9 · outbound
Compositional Semantic Communication for Physical AI: Category Theory Meets Game Theory Topos and Stacks of Deep Neural Networks
Reference 31
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Observation 0e573208-9517-4f48-93e3-71956951a767 · outbound
Compositional Semantic Communication for Physical AI: Category Theory Meets Game Theory Unsupervised learning of compositional energy concepts,
Reference 32
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Observation 2320ff5f-89fe-44aa-ad6c-436cea7b99fb · outbound
Compositional Semantic Communication for Physical AI: Category Theory Meets Game Theory Lenses in functional programming,
Reference 33
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Observation 5dbac4df-afa0-41fe-ad65-fcdc17853668 · outbound
Compositional Semantic Communication for Physical AI: Category Theory Meets Game Theory Categories of Semantic Concepts
Reference 34
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Observation 6e73dae2-17be-4d9f-8f80-5d568e0391ab · outbound
Compositional Semantic Communication for Physical AI: Category Theory Meets Game Theory Stackelberg game for utility-based cooperative cognitive radio networks,
Reference 35
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Observation 6797bb75-fbc0-4feb-9869-d0d0a8842a62 · outbound
Compositional Semantic Communication for Physical AI: Category Theory Meets Game Theory Managing price uncertainty in prosumer-centric energy trading: A prospect-theoretic stackelberg game approach,
Reference 36
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Observation a15d6c07-3138-4104-912a-4b7bcb095f24 · outbound
Compositional Semantic Communication for Physical AI: Category Theory Meets Game Theory A generalization of the maximum theorem,
Reference 37
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Observation 2391881d-a2ad-4795-b073-9fa3f0f0da96 · outbound
Compositional Semantic Communication for Physical AI: Category Theory Meets Game Theory On nonlinear fractional programming,
Reference 38
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Observation ac3e248d-5edc-4d23-a68e-b8bdd42840e8 · outbound
Compositional Semantic Communication for Physical AI: Category Theory Meets Game Theory Gymnasium: A Standard Interface for Reinforcement Learning Environments
Reference 39
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Observation 243ba55a-4ce2-4c11-af20-5de153cf097d · outbound
Compositional Semantic Communication for Physical AI: Category Theory Meets Game Theory Carla: An open urban driving simulator,
Reference 40
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Observation a7a1da28-9f8e-4d86-97ed-9a8b5312dffd · outbound
Compositional Semantic Communication for Physical AI: Category Theory Meets Game Theory Microsoft coco: Common objects in context,
Reference 41
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Observation bfd5d574-8f82-4cba-a05b-3e7868411e0e · outbound
Compositional Semantic Communication for Physical AI: Category Theory Meets Game Theory Existence and uniqueness of equilibrium points for concave n-person games,
Reference 42
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Observation b33b67e3-4144-4531-b38d-c5439725163d · outbound
Compositional Semantic Communication for Physical AI: Category Theory Meets Game Theory For composed objectsz 1 ⊕z ′ 1 ∈ Z1 and Z2 ⊕z ′ 2 ∈ Z2, the fibrational structure is preserved when p# 1 (z1 ⊕z ′
Reference 43
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Observation 23b456b8-0f02-4784-9ba5-38c427ca9cbc · outbound
Compositional Semantic Communication for Physical AI: Category Theory Meets Game Theory Unresolved cited work
Reference 44
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Observation ad820655-8e34-4114-a746-427064986eaa · outbound
Compositional Semantic Communication for Physical AI: Category Theory Meets Game Theory Unresolved cited work
Reference 45
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Observation ce66841a-2f8c-43bb-8b24-c0989e6c06a0 · outbound
Compositional Semantic Communication for Physical AI: Category Theory Meets Game Theory Unresolved cited work
Reference 46
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Observation a3d1d644-6295-4516-80a5-cc863556e7ea · outbound
Compositional Semantic Communication for Physical AI: Category Theory Meets Game Theory Since both map toℓ⊗ℓ ′, the composed pair remains in the fiber product overℓ⊗ℓ ′, preserving the compositional structure
Reference 47
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No inbound Pith citation observations are available.