ID
|
Title
|
Authors
|
Session
|
24
|
Evaluation of Virtual Agents Attributed with Theory of Mind in a Real Time Action Game
|
Mark Hoogendoorn, Jeremy Soumokil
|
1.1
|
26
|
When Should There be a "Me" in "Team"? Distributed Multi-Agent Optimization Under Uncertainty
|
Matthew Taylor, Manish Jain, Yanqin Jin, Makoto Yokoo, Milind Tambe
|
2.1
|
28
|
Reasoning about Agents and Protocols via Goals and Commitments
|
Amit Chopra, Fabiano Dalpiaz, Paolo Giorgini, John Mylopoulos
|
11.1
|
31
|
Augmenting Appearance-Based Localization and Navigation using Belief Update
|
Guy Shani, George Chrysanthakopoulos
|
4.1
|
32
|
Strategic Planning for Probabilistic Games with Incomplete Information
|
Henning Schnoor
|
21.1
|
35
|
Moving Target D* Lite
|
Xiaoxun Sun, William Yeoh, Sven Koenig
|
1.2
|
36
|
Monotone cooperative games and their threshold versions
|
Haris Aziz, Felix Brandt, Paul Harrenstein
|
18.1
|
40
|
Frequency Adjusted Multi-agent Q-learning
|
Michael Kaisers, Karl Tuyls
|
6.1
|
44
|
On the Logic of Argumentation Theory
|
Davide Grossi
|
8.1
|
46
|
Complexity of Judgment Aggregation: Safety of the Agenda
|
Ulle Endriss, Umberto Grandi, Daniele Porello
|
13.1
|
47
|
Decision Making with Dynamically Arriving Information
|
Meir Kalech, Avi Pfeffer
|
5.2
|
51
|
Manipulation of Copeland Elections
|
Piotr Faliszewski, Edith Hemaspaandra, Henning Schnoor
|
13.2
|
52
|
Dependence Theory via Game Theory
|
Davide Grossi, Paolo Turrini
|
18.6
|
53
|
Using Geometric Diffusions for Recognition-Primed Multi-Agent Decision Making
|
Xiaocong Fan, Meng Su
|
5.3
|
64
|
Optimal Social Laws
|
Thomas Ågotnes, Michael Wooldridge
|
13.3
|
65
|
Partial Order Reductions for model checking temporal epistemic logic over interleaved mulit-agent sy
|
Alessio Lomuscio, Wojciech Penczek, Hongyang Qu
|
14.1
|
80
|
Agents and Artefacts for Multiple Models co-evolution (AA4MM)
|
Julien Siebert, Laurent Ciarletta, Vincent Chevier
|
9.1
|
81
|
Collective Argument Evaluation as Judgement Aggregation
|
Iyad Rahwan, Fernando Tohme
|
8.2
|
85
|
Ants Meeting Algorithms
|
Asaf Shiloni, Alon Levy, Ariel Felner, Meir Kalech
|
4.2
|
87
|
Combining statistics and arguments to compute trust
|
Paul-Amaury Matt, Maxime Morge, Francesca Toni
|
10.1
|
89
|
Using Counterfactual Regret Minimization to Create Competitive Multiplayer Poker Agents
|
Nick Abou Risk, Duane Szafron
|
3.1
|
92
|
What Should Be Learned In Agent-Centered Search?
|
Sturtevant Nathan, Vadim Bulitko, Yngvi Bjornsson
|
X.2
|
103
|
Using Graph Analysis to Study Networks of Adaptive Agent
|
Sherief Abdallah
|
9.2
|
104
|
On the Role of Distances in Defining Voting Rules
|
Edith Elkind, Piotr Faliszewski, Arkadii Slinko
|
14.2
|
106
|
Programming Norm Change
|
Nick Tinnemeier, Mehdi Dastani, John-Jules Meyer
|
19.1
|
112
|
On the Limits of Dictatorial Classification
|
Reshef Meir, Ariel Procaccia, Jeffrey Rosenschein
|
7.1
|
118
|
Point-Based Policy Generation for Decentralized POMDPs
|
Feng Wu, Shlomo Zilberstein, Xiaoping Chen
|
27.1
|
119
|
Avoiding the Prisoner's Dilemma in Auction-based Negotiations for Highly Rugged Utility Spaces
|
Ivan Marsa-Maestre, Miguel A. Lopez-Carmona, Juan R. Velasco, Enrique de la Hoz
|
8.3
|
127
|
Honor Among Thieves - Collusion In Multi-Unit Auctions
|
Yoram Bachrach
|
7.2
|
129
|
Path Disruption Games
|
Yoram Bachrach, Ely Porat
|
18.3
|
135
|
Strategy Exploration in Empirical Games
|
Patrick Jordan, Michael Wellman
|
18.4
|
170
|
Learning Context Conditions for BDI Plan Selection
|
Dhirendra Singh, Sebastian Sardina, Lin Padgham, Stephane Airiau
|
6.3
|
171
|
Changing Neighbours: Improving Tag-Based Cooperation
|
Nathan Griffiths, Michael Luck
|
10.6
|
183
|
Finding Contingent Plans with Loops by Incrementally Generalizing and Merging Classical Plans
|
Siddharth Srivastava, Neil Immerman, Shlomo Zilberstein
|
27.2
|
185
|
Opportunistic Belief Reconciliation During Distributed Interactions
|
Paul Martin, Dave Robertson, Michael Rovatsos
|
8.4
|
186
|
Minimal Retentive Sets in Tournaments
|
Felix Brandt, Markus Brill, Felix Fischer, Paul Harrenstein
|
13.4
|
189
|
Distributed Multiagent Learning with a Broadcast Adaptive Subgradient Method
|
Renato Cavalcante, Alex Rogers, Nick Jennings, Isao Yamada
|
6.4
|
190
|
Flexible Task Resourcing for Intelligent Agents
|
Murat Sensoy, Wamberto Vasconcelos, Timothy Norman
|
11.2
|
192
|
A General, Fully Distributed Multi-Agent Planning Algorithm
|
Raz Nissim, Ronen Brafman, Carmel Domshlak
|
27.3
|
196
|
Risk-Sensitive Planning in Partially Observable Environments
|
Janusz Marecki, Pradeep Varakantham
|
27.4
|
203
|
An Agent-Based Framework to Support Crime Prevention
|
Tibor Bosse, Charlotte Gerritsen
|
9.3
|
208
|
Alternating-time Dynamic Logic
|
Nicolas Troquard, Dirk Walther
|
11.3
|
210
|
How important are simulation schemes in multi-agent systems?
|
Nazim Fatès, Vincent Chevier
|
9.4
|
211
|
Resource-bounded alternating-time temporal logic
|
Natasha Alechina, Brian Logan, Hoang Nga Nguyen, Abdur Rakib
|
11.4
|
219
|
A Game-Theoretic Analysis of Market Selection Strategies for Competing Double Auction Marketplaces
|
Bing Shi, Enrico Gerding, Perukrishnen Vytelingum, Nick Jennings
|
23.1
|
224
|
Decision Rules and Decision Markets
|
Abraham Othman, Tuomas Sandholm
|
7.3
|
226
|
When Do Markets with Simple Agents Fail?
|
Abraham Othman, Tuomas Sandholm
|
23.2
|
227
|
A Logic-Based Representation for Coalitional Games with Externalities
|
Tomasz Michalak, Dorota Marciniak, Marcin Szamotulski, Talal Rahwan, Peter McBurney, Michael Wooldridge, Nick Jennings
|
2.3
|
228
|
Finding Approximate Competitive Equilibria: Efficient and Fair Course Allocation
|
Abraham Othman, Eric Budish, Tuomas Sandholm
|
23.3
|
238
|
Enumeration and Exact Design of Weighted Voting Games
|
Bart de Keijzer, Tomas Klos, Yingqian Zhang
|
13.5
|
243
|
To Teach or not to Teach? Decision Making Under Uncertainty in Ad Hoc Team
|
Peter Stone, Sarit Kraus
|
2.2
|
245
|
Combining Function Approximation, Human Teachers, and Training Regimens for Real-World RL
|
Peng Zang, Arya Irani, Peng Zhou, Charles Isbell, Andrea Thomaz
|
6.5
|
248
|
High-level Reinforcement Learning in Strategy Games
|
Christopher Amato, Guy Shani
|
1.3
|
250
|
Stackelberg vs. Nash in Security Games: Interchangeability, Equivalence, and Uniqueness
|
Zhengyu Yin, Dmytro Korzhyk, Christopher Kiekintveld, Vincent Conitzer, Ronald Parr, Milind Tambe
|
18.5
|
251
|
Strategy-proof Allocation of Multiple Items without Payments or Priors
|
Mingyu Guo, Vincent Conitzer
|
23.4
|
253
|
Preference Elicitation for Risky Prospects
|
Greg Hines, Kate Larson
|
23.5
|
258
|
Asynchronous Algorithms for Approximate Distributed Constraint Optimization with Quality Bounds
|
Christopher Kiekintveld, Zhengyu Yin, Atul Kumar, Milind Tambe
|
2.4
|
259
|
Inter-Robot Transfer Learning for Perceptual Categorization
|
Kira Zsolt
|
4.3
|
282
|
A Systematic Agent Framework for Situated Autonomous Systems
|
Frederic Py, Kanna Rajan, Conor McGann
|
4.4
|
283
|
Agent-based Micro-Storage Management for the Smart Grid
|
Perukrishnen Vytelingum, Thomas D. Voice, Sarvapali Ramchurn, Alex Rogers, Nick Jennings
|
Y.2
|
284
|
Characterising and Matching Iterative and Recursive Agent Interaction Protocols
|
Tim Miller, Peter McBurney
|
25.1
|
294
|
Aggregating Preferences in Multi-Issue Domains by Using Maximum Likelihood Estimators
|
Lirong Xia, Vincent Conitzer, Jerome Lang
|
13.6
|
296
|
Agent Composition Synthesis based on ATL
|
Guiseppe De Giacomo, Paolo Felli
|
11.6
|
298
|
An Architecture for Modular Distributed Simulation with Agent-Based Models
|
David Scerri, Sarah Hickmott, Lin Padgham, Alexis Drogoul
|
9.5
|
308
|
Worst-case efficiency ratio in false-name-proof combinatorial auction mechanisms
|
Atsushi Iwasaki, Vincent Conitzer, Mingyu Guo, Taiki Todo, Yoshifusa Omori, Yuko Sakurai, Makoto Yokoo
|
7.4
|
312
|
Cooperative Problem Solving against Adversary:Quantified Distributed Constraint Satisfaction Problem
|
Satomi Baba, Naofumi Nishimura, Atsushi Iwasaki, Makoto Yokoo, Marius Silaghi, Katsutoshi Hirayama, Toshihiro Matsui
|
16.4
|
313
|
PAC-MDP Learning with Knowledge-based Admissible Models
|
Marek Grzes, Daniel Kudenko
|
6.6
|
328
|
Complexity of Social Welfare Optimization in Multiagent Resource Allocation
|
Magnus Roos, Joerg Rothe
|
7.5
|
332
|
Improving DPOP with Function Filtering
|
pedro meseguer
|
2.5
|
333
|
On Events in Multi-Robot Patrol in Adversarial Environments
|
Noa Agmon
|
4.5
|
339
|
Distributed BDD-based BMC for the Verification of Multi-Agent Systems
|
Andrew Jones, Alessio Lomuscio
|
14.3
|
340
|
Optimal Temporal Decoupling in Multiagent Systems
|
Léon Planken, Mathijs de Weerdt, Cees Witteveen
|
16.5
|
343
|
CTL-STIT: enhancing ATL to express important multi-agent system verification properties
|
Jan Broersen
|
14.4
|
352
|
I Mean It! Detecting user intentions to create believable behaviour for virtual agents in games
|
Eurico Doirado, Carlos Martinho
|
1.4
|
356
|
Agent Programming via Planning Programs
|
Guiseppe De Giacomo, Fabio Patrizi, Sebastian Sardina
|
11.5
|
367
|
Adaptive Expressiveness -- Virtual Conversational Agents That Can Align to Their Interaction Partner
|
Hendrik Buschmeier, Kirsten Bergmann, Stefan Kopp
|
1.5
|
368
|
Divide and Coordinate: solving DCOPs by agreement
|
Meritxell Vinyals, Marc Pujol, Juan Antonio Rodriguez Aguilar, Jesús Cerquides
|
2.6
|
378
|
Agent Interaction, Multiple Perspectives, and Swarming Simulation
|
H. Van Dyke Parunak, Sven Brueckner, Robert Bisson
|
9.6
|
379
|
UAV Swarm Coordination using Cooperative Control for establishing a Wireless Communications Backbone
|
Achudhan Sivakumar, Colin Tan
|
24.1
|
390
|
A Decentralised Coordination Algorithm for Maximising Sensor Coverage in Large Sensor Networks
|
Ruben Stranders, Alex Rogers, Nick Jennings
|
24.2
|
392
|
Making Norms Concrete
|
Huib Aldewereld, Sergio Álvarez-Napagao, Frank Dignum, Javier Vazquez-Salceda
|
15.1
|
393
|
Optimal Planning Against Fictitious Players
|
Enrique Munoz de Cote, Nick Jennings
|
21.3
|
398
|
Cultivating Desired Behavior: Policy Teaching Via Environment-Dynamics Tweaks
|
Zinovi Rabinovich, Lachlan Dufton, Kate Larson, Nick Jennings
|
21.6
|
403
|
O ptimal Policy Switching Algorithms for Reinforcement Learning
|
Gheorghe Comanici, Doina Precup
|
17.1
|
409
|
Using Virtual Agents to Simulate Interpersonal Communication Coordination of Different Cultures
|
Birgit Endrass, Lixing Huang, Jonathan Gratch, Elisabeth Andre
|
1.6
|
421
|
Learning Multi-Agent State Space Representations
|
Yann-Michaël De Hauwere, Peter Vrancx, Ann Nowe
|
17.2
|
434
|
A Model of Normative Power
|
Nir Oren, Michael Luck, Simon Miles
|
15.2
|
436
|
|