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Paper Citation Record · LEDGER

Multi-Agent Inverse Reinforcement Learning for Identifying Pareto-Efficient Coordination -- A Distributionally Robust Approach

As of 18 August 2026, this Paper Citation Record lists 59 of 59 outbound references and 0 inbound Pith citation observations for arXiv:2509.08956.

A citation records a reference. It does not transfer a finding from one paper to another.

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2509.08956 v1

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measured 59 of 59 reference resolution

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measured 59 of 59 standing notices

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measured 0 of 0 inbound itemization

Pith citing papers itemized under the disclosed page cap.

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measured 0 of 1 external citation measurements

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Reference resolution

59 of 59 outbound references displayed

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Outbound references

Observation 6ac20142-e8b7-45b2-9372-24922e240e3b · outbound

This paper cites UA V swarm intelligence: Recent advances and future trends,.

Multi-Agent Inverse Reinforcement Learning for Identifying Pareto-Efficient Coordination -- A Distributionally Robust Approach UA V swarm intelligence: Recent advances and future trends,

Reference 1

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Observation d82788f4-330f-4178-a429-6a6d70f5a7f3 · outbound

This paper cites UA V communication networks issues: A review,.

Multi-Agent Inverse Reinforcement Learning for Identifying Pareto-Efficient Coordination -- A Distributionally Robust Approach UA V communication networks issues: A review,

Reference 2

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This paper cites an unresolved cited work.

Multi-Agent Inverse Reinforcement Learning for Identifying Pareto-Efficient Coordination -- A Distributionally Robust Approach Unresolved cited work

Reference 3

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This paper cites Electronic warfare systems,.

Multi-Agent Inverse Reinforcement Learning for Identifying Pareto-Efficient Coordination -- A Distributionally Robust Approach Electronic warfare systems,

Reference 4

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Observation 6be7a1b1-1cea-4296-8603-6f61dea19896 · outbound

This paper cites Identifying coor- dination in a cognitive radar network–a multi-objective inverse reinforcement learning approach,.

Multi-Agent Inverse Reinforcement Learning for Identifying Pareto-Efficient Coordination -- A Distributionally Robust Approach Identifying coor- dination in a cognitive radar network–a multi-objective inverse reinforcement learning approach,

Reference 5

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Observation b441a293-c99a-46b5-901e-9c7fd4881d07 · outbound

This paper cites Statistical detection of coordination in a cognitive radar network through inverse multi-objective optimization,.

Multi-Agent Inverse Reinforcement Learning for Identifying Pareto-Efficient Coordination -- A Distributionally Robust Approach Statistical detection of coordination in a cognitive radar network through inverse multi-objective optimization,

Reference 6

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This paper cites Revealed preference,.

Multi-Agent Inverse Reinforcement Learning for Identifying Pareto-Efficient Coordination -- A Distributionally Robust Approach Revealed preference,

Reference 7

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Multi-Agent Inverse Reinforcement Learning for Identifying Pareto-Efficient Coordination -- A Distributionally Robust Approach Unresolved cited work

Reference 8

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This paper cites The construction of utility functions from expendi- ture data,.

Multi-Agent Inverse Reinforcement Learning for Identifying Pareto-Efficient Coordination -- A Distributionally Robust Approach The construction of utility functions from expendi- ture data,

Reference 9

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This paper cites Distributionally Robust Optimization: A Review.

Multi-Agent Inverse Reinforcement Learning for Identifying Pareto-Efficient Coordination -- A Distributionally Robust Approach Distributionally Robust Optimization: A Review

Reference 10

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Observation 677d5c95-53b4-480d-aeea-66ae0f1e61f7 · outbound

This paper cites Frameworks and results in distributionally robust optimiza- tion,.

Multi-Agent Inverse Reinforcement Learning for Identifying Pareto-Efficient Coordination -- A Distributionally Robust Approach Frameworks and results in distributionally robust optimiza- tion,

Reference 11

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Observation 796f53ec-d16b-46a2-a979-b71779aeb2c2 · outbound

This paper cites Wasserstein distributionally robust optimization: The- ory and applications in machine learning,.

Multi-Agent Inverse Reinforcement Learning for Identifying Pareto-Efficient Coordination -- A Distributionally Robust Approach Wasserstein distributionally robust optimization: The- ory and applications in machine learning,

Reference 12

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Observation 7a2058d8-bac3-40ea-9224-fc8608ffb5a5 · outbound

This paper cites Thirty years of machine learning: The road to Pareto-optimal wireless networks,.

Multi-Agent Inverse Reinforcement Learning for Identifying Pareto-Efficient Coordination -- A Distributionally Robust Approach Thirty years of machine learning: The road to Pareto-optimal wireless networks,

Reference 13

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This paper cites Pruning and ranking the Pareto optimal set, application for the dynamic multi-objective network design problem,.

Multi-Agent Inverse Reinforcement Learning for Identifying Pareto-Efficient Coordination -- A Distributionally Robust Approach Pruning and ranking the Pareto optimal set, application for the dynamic multi-objective network design problem,

Reference 14

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Multi-Agent Inverse Reinforcement Learning for Identifying Pareto-Efficient Coordination -- A Distributionally Robust Approach Energy and age Pareto optimal trajectories in UA V-assisted wireless data collection,

Reference 15

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This paper cites Topology control of unmanned aerial vehicle (UA V) mesh networks: A multi-objective evolutionary algorithm approach,.

Multi-Agent Inverse Reinforcement Learning for Identifying Pareto-Efficient Coordination -- A Distributionally Robust Approach Topology control of unmanned aerial vehicle (UA V) mesh networks: A multi-objective evolutionary algorithm approach,

Reference 16

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Multi-Agent Inverse Reinforcement Learning for Identifying Pareto-Efficient Coordination -- A Distributionally Robust Approach Multi-UA V task allo- cation based on improved algorithm of multi-objective parti- cle swarm optimization,

Reference 17

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Observation 9ece1cb2-d0b9-4d89-803c-61bbd4c70a85 · outbound

This paper cites Pareto optimal pid tuning for px4-based unmanned aerial vehicles by using a multi-objective particle swarm optimization algorithm,.

Multi-Agent Inverse Reinforcement Learning for Identifying Pareto-Efficient Coordination -- A Distributionally Robust Approach Pareto optimal pid tuning for px4-based unmanned aerial vehicles by using a multi-objective particle swarm optimization algorithm,

Reference 18

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This paper cites Achieving Pareto opti- mality through distributed learning,.

Multi-Agent Inverse Reinforcement Learning for Identifying Pareto-Efficient Coordination -- A Distributionally Robust Approach Achieving Pareto opti- mality through distributed learning,

Reference 19

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This paper cites Multi- objective multi-agent decision making: a utility-based analysis and survey,.

Multi-Agent Inverse Reinforcement Learning for Identifying Pareto-Efficient Coordination -- A Distributionally Robust Approach Multi- objective multi-agent decision making: a utility-based analysis and survey,

Reference 20

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Multi-Agent Inverse Reinforcement Learning for Identifying Pareto-Efficient Coordination -- A Distributionally Robust Approach Iden- tifying cognitive radars-inverse reinforcement learning using revealed preferences,

Reference 21

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Multi-Agent Inverse Reinforcement Learning for Identifying Pareto-Efficient Coordination -- A Distributionally Robust Approach Meta-cognition. an inverse-inverse reinforcement learning approach for cogni- tive radars,

Reference 22

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Observation f5851083-db78-48e3-b1cd-08d121995ea7 · outbound

This paper cites How can a cognitive radar mask its cognition?.

Multi-Agent Inverse Reinforcement Learning for Identifying Pareto-Efficient Coordination -- A Distributionally Robust Approach How can a cognitive radar mask its cognition?

Reference 23

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This paper cites Maximum Entropy Deep Inverse Reinforcement Learning.

Multi-Agent Inverse Reinforcement Learning for Identifying Pareto-Efficient Coordination -- A Distributionally Robust Approach Maximum Entropy Deep Inverse Reinforcement Learning

Reference 24

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Observation 81f3100a-9a72-4a2a-be2d-0f1065238f78 · outbound

This paper cites Large-scale cost function learning for path planning using deep inverse reinforcement learning,.

Multi-Agent Inverse Reinforcement Learning for Identifying Pareto-Efficient Coordination -- A Distributionally Robust Approach Large-scale cost function learning for path planning using deep inverse reinforcement learning,

Reference 25

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Multi-Agent Inverse Reinforcement Learning for Identifying Pareto-Efficient Coordination -- A Distributionally Robust Approach Inferring group intent as a cooperative game. an nlp-based framework for trajectory analysis,

Reference 26

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Multi-Agent Inverse Reinforcement Learning for Identifying Pareto-Efficient Coordination -- A Distributionally Robust Approach The computational algorithm for the para- metric objective function,

Reference 27

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Multi-Agent Inverse Reinforcement Learning for Identifying Pareto-Efficient Coordination -- A Distributionally Robust Approach Miettinen, Nonlinear multiobjective optimization

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Multi-Agent Inverse Reinforcement Learning for Identifying Pareto-Efficient Coordination -- A Distributionally Robust Approach A CA V platoon control method for isolated intersections: Guaranteed feasible multi-objective approach with priority,

Reference 29

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Multi-Agent Inverse Reinforcement Learning for Identifying Pareto-Efficient Coordination -- A Distributionally Robust Approach Multi-objective optimization framework for enhancing efficiency and sustainability in smart grids,

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Multi-Agent Inverse Reinforcement Learning for Identifying Pareto-Efficient Coordination -- A Distributionally Robust Approach Revealed stochastic preference: a synthesis,

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This paper cites The revealed pref- erence approach to collective consumption behaviour: Testing and sharing rule recovery,.

Multi-Agent Inverse Reinforcement Learning for Identifying Pareto-Efficient Coordination -- A Distributionally Robust Approach The revealed pref- erence approach to collective consumption behaviour: Testing and sharing rule recovery,

Reference 32

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This paper cites Recent advances in robust optimization: An overview,.

Multi-Agent Inverse Reinforcement Learning for Identifying Pareto-Efficient Coordination -- A Distributionally Robust Approach Recent advances in robust optimization: An overview,

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Observation 72a7262a-ce55-4db4-bace-5fe53ac2e78e · outbound

This paper cites Distributionally robust optimization: A review on theory and applications,.

Multi-Agent Inverse Reinforcement Learning for Identifying Pareto-Efficient Coordination -- A Distributionally Robust Approach Distributionally robust optimization: A review on theory and applications,

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This paper cites Wasserstein distributionally robust inverse multiobjective optimization,.

Multi-Agent Inverse Reinforcement Learning for Identifying Pareto-Efficient Coordination -- A Distributionally Robust Approach Wasserstein distributionally robust inverse multiobjective optimization,

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Multi-Agent Inverse Reinforcement Learning for Identifying Pareto-Efficient Coordination -- A Distributionally Robust Approach Adaptive distributionally robust optimization,

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Observation 806f4dee-55c7-4104-aced-fc7064ecce28 · outbound

This paper cites Wasserstein distributionally robust look-ahead economic dispatch,.

Multi-Agent Inverse Reinforcement Learning for Identifying Pareto-Efficient Coordination -- A Distributionally Robust Approach Wasserstein distributionally robust look-ahead economic dispatch,

Reference 37

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Observation ec892d65-cd13-425a-a5ee-7564560881bb · outbound

This paper cites Decomposition Algorithm for Distributionally Robust Optimization using Wasserstein Metric.

Multi-Agent Inverse Reinforcement Learning for Identifying Pareto-Efficient Coordination -- A Distributionally Robust Approach Decomposition Algorithm for Distributionally Robust Optimization using Wasserstein Metric

Reference 38

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source=pdf_text observed=2026-08-04T20:08:06.427532Z digest=sha256:a20ed50c73a8473be3f04d91a35d515a83570f83707ca5f43156d077d2ec7e3f

Observation 5e431f02-f271-42b4-9a7c-8bac4b11cf70 · outbound

This paper cites Semi-infinite programming: the- ory, methods, and applications,.

Multi-Agent Inverse Reinforcement Learning for Identifying Pareto-Efficient Coordination -- A Distributionally Robust Approach Semi-infinite programming: the- ory, methods, and applications,

Reference 39

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source=pdf_text observed=2026-08-04T20:08:06.431320Z digest=sha256:458c4998ba02fc3da18d68706822f658ccb673ef163c1b08c5e687ff0eda25e5

Observation fcb5e86e-806c-43ed-85c1-d33fb87de982 · outbound

This paper cites Cutting-plane training of structural svms,.

Multi-Agent Inverse Reinforcement Learning for Identifying Pareto-Efficient Coordination -- A Distributionally Robust Approach Cutting-plane training of structural svms,

Reference 40

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source=pdf_text observed=2026-08-04T20:08:06.434727Z digest=sha256:5b827f45940f2594cb21b967eed9e7ba4c6d938ee6bf24272d3135b264f5b7e7

Observation 18216d36-e579-43a1-a12e-0e457f4f67cb · outbound

This paper cites Power allocation for target detection in radar networks based on low probability of intercept: A cooperative game theoretical strategy,.

Multi-Agent Inverse Reinforcement Learning for Identifying Pareto-Efficient Coordination -- A Distributionally Robust Approach Power allocation for target detection in radar networks based on low probability of intercept: A cooperative game theoretical strategy,

Reference 41

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source=pdf_text observed=2026-08-04T20:08:06.437989Z digest=sha256:12669ccb5b6e9637a69b78addac7d1945f0f43f4a48751df5261e1dfd76ed0be

Observation b7bd0915-30fe-460e-a417-dd4c9c69239c · outbound

This paper cites Hiding unmanned aerial vehicles for wireless transmissions by covert communications,.

Multi-Agent Inverse Reinforcement Learning for Identifying Pareto-Efficient Coordination -- A Distributionally Robust Approach Hiding unmanned aerial vehicles for wireless transmissions by covert communications,

Reference 42

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source=pdf_text observed=2026-08-04T20:08:06.441232Z digest=sha256:66ac52c0fece6948a74bd008ffd938a2ef735a84cc92a5759709cdbd7020db64

Observation 5e133aa6-49af-46e2-959a-0590d029224d · outbound

This paper cites UA V-enabled covert wireless data collection,.

Multi-Agent Inverse Reinforcement Learning for Identifying Pareto-Efficient Coordination -- A Distributionally Robust Approach UA V-enabled covert wireless data collection,

Reference 43

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source=pdf_text observed=2026-08-04T20:08:06.444317Z digest=sha256:4eb11a05c267133f07ff1cb545223ad40651221879e08b81fdbc91159e625809

Observation 3235df6d-0958-4303-bddc-036783f602e2 · outbound

This paper cites UA V-enabled covert federated learning,.

Multi-Agent Inverse Reinforcement Learning for Identifying Pareto-Efficient Coordination -- A Distributionally Robust Approach UA V-enabled covert federated learning,

Reference 44

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source=pdf_text observed=2026-08-04T20:08:06.447752Z digest=sha256:5f7e6468157f8e2d4bfd5d17bc77c18b6d030146d6f0cc399a54feee92cd263d

Observation b11cf2ff-44e2-4637-aaec-67bfc7ac6f67 · outbound

This paper cites Survey of maneuvering target tracking. part i. dynamic models,.

Multi-Agent Inverse Reinforcement Learning for Identifying Pareto-Efficient Coordination -- A Distributionally Robust Approach Survey of maneuvering target tracking. part i. dynamic models,

Reference 45

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source=pdf_text observed=2026-08-04T20:08:06.451124Z digest=sha256:859987869ac33bcd109c5b618a6ddb4933ab02edb369f4431c43bc0eb2fdc722

Observation b840c94e-2dc4-40ee-890b-ff1d3fee7583 · outbound

This paper cites Bar-Shalom, X.

Multi-Agent Inverse Reinforcement Learning for Identifying Pareto-Efficient Coordination -- A Distributionally Robust Approach Bar-Shalom, X

Reference 46

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Observation 043f5db3-d9fd-4815-8662-ebfc130a6bf1 · outbound

This paper cites Multi-target tracking using joint probabilistic data association,.

Multi-Agent Inverse Reinforcement Learning for Identifying Pareto-Efficient Coordination -- A Distributionally Robust Approach Multi-target tracking using joint probabilistic data association,

Reference 47

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source=pdf_text observed=2026-08-04T20:08:06.457493Z digest=sha256:f3a42b81d65bedeb24d1114fa7df0393c43886446b1e6e4a9123a16a92fe2e2b

Observation 5bb37746-8c29-4146-85d7-0bcb2e835324 · outbound

This paper cites Joint probabilistic data association revisited,.

Multi-Agent Inverse Reinforcement Learning for Identifying Pareto-Efficient Coordination -- A Distributionally Robust Approach Joint probabilistic data association revisited,

Reference 48

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source=pdf_text observed=2026-08-04T20:08:06.461383Z digest=sha256:daa9a37f4fcd5bc5c1bf0110520fd46d91d898419d47d286c37e632effd51208

Observation 933c6088-3767-4a9c-8cb4-6bd3e8438344 · outbound

This paper cites an unresolved cited work.

Multi-Agent Inverse Reinforcement Learning for Identifying Pareto-Efficient Coordination -- A Distributionally Robust Approach Unresolved cited work

Reference 49

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Observation 5332636b-2fa5-472d-9bcf-7743cf2cb97c · outbound

This paper cites Optimal waveform selection for tracking systems,.

Multi-Agent Inverse Reinforcement Learning for Identifying Pareto-Efficient Coordination -- A Distributionally Robust Approach Optimal waveform selection for tracking systems,

Reference 50

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source=pdf_text observed=2026-08-04T20:08:06.468083Z digest=sha256:18b97c0246cbf96e2f9c4afecb47c2965ca291d23e1571d24cf52da231dd8ae6

Observation 237a97cb-5c04-42f4-b5f3-6272748a353f · outbound

This paper cites Bar-Shalom and X.-R.

Multi-Agent Inverse Reinforcement Learning for Identifying Pareto-Efficient Coordination -- A Distributionally Robust Approach Bar-Shalom and X.-R

Reference 51

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Observation e4edbacf-c291-4b7c-9d0a-b89fe7ab0cc6 · outbound

This paper cites collective rationality.

Multi-Agent Inverse Reinforcement Learning for Identifying Pareto-Efficient Coordination -- A Distributionally Robust Approach collective rationality

Reference 52

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Observation ca45a65e-38e7-4f01-8332-38e0c7a70881 · outbound

This paper cites an unresolved cited work.

Multi-Agent Inverse Reinforcement Learning for Identifying Pareto-Efficient Coordination -- A Distributionally Robust Approach Unresolved cited work

Reference 53

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Observation 9430a818-49ae-468f-89c8-f99c50cd29d5 · outbound

This paper cites an unresolved cited work.

Multi-Agent Inverse Reinforcement Learning for Identifying Pareto-Efficient Coordination -- A Distributionally Robust Approach Unresolved cited work

Reference 54

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Observation 7817ac2d-3418-4fa5-b7e8-f1f0507aafca · outbound

This paper cites an unresolved cited work.

Multi-Agent Inverse Reinforcement Learning for Identifying Pareto-Efficient Coordination -- A Distributionally Robust Approach Unresolved cited work

Reference 55

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Observation b6c4db73-8a88-43f4-8adf-cb6495cdbd76 · outbound

This paper cites none of the targets.

Multi-Agent Inverse Reinforcement Learning for Identifying Pareto-Efficient Coordination -- A Distributionally Robust Approach none of the targets

Reference 56

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Observation 0fd87156-a23c-4601-85f3-6e563785295e · outbound

This paper cites an unresolved cited work.

Multi-Agent Inverse Reinforcement Learning for Identifying Pareto-Efficient Coordination -- A Distributionally Robust Approach Unresolved cited work

Reference 57

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source=pdf_text observed=2026-08-04T20:08:06.492455Z digest=sha256:54f6a737b8a3848143025efdf90395e5b6be93391bc3636072c89a5c4d95c3e7

Observation 452b557f-1764-41d8-a69a-54a90f1ecb26 · outbound

This paper cites target detection indicator.

Multi-Agent Inverse Reinforcement Learning for Identifying Pareto-Efficient Coordination -- A Distributionally Robust Approach target detection indicator

Reference 58

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source=pdf_text observed=2026-08-04T20:08:06.495898Z digest=sha256:bd54e1482a932c5bbb0c524795c8c2aa136078020bfc22b6b5a996c8d867a686

Observation 3e8fac1f-f8ac-4b13-9a59-56209b5825f0 · outbound

This paper cites an unresolved cited work.

Multi-Agent Inverse Reinforcement Learning for Identifying Pareto-Efficient Coordination -- A Distributionally Robust Approach Unresolved cited work

Reference 59

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source=pdf_text observed=2026-08-04T20:08:06.499666Z digest=sha256:26cc4ad4f209ef52fb6ddca4d3d54ee0f3d1b5e642ebddf327ed4bb131fd0363

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