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Research Activities

Habilitation à diriger les recherches

  • Defended by November 2018
  • Habilitation dissertation available here

Current PhD students

  • Yoann Poupart

    • Title: Interprétabilité pour les systèmes multi-agents profonds.
    • Started by October 2024
    • Supervisors: Aurélie Beynier, Nicolas Maudet.
  • Claudia Viaro

    • Title: Modélisation à base d'agents avec négociation multi-niveaux et apprentissage par renforcement pour la coopération climatique
    • Started by October 2024
    • Surpevisors: Aurélie Beynier, Stéphane Zuber, Arianna Novaro.
  • Alexandre Kha

    • Title: Allocation de tâches décentralisée entre un ensemble de drones collaboratifs
    • Started by April 2024
    • Supervisors: Aurélie Beynier, Christophe Labreuche
  • Fares Chouaki

    • Title : Multiagent ethical behaviors in multi-objective reinforcement learning
    • Started by October 2023
    • Supervisors: Aurélie Beynier, Paolo Viappiani
  • Jordan Thieyre

    • Title : Modèles formels d'argumentation pour les débats en ligne
    • Started by October 2023
    • Supervisors: Aurélie Beynier, Nicolas Maudet, Srdjan Vesic

Former PhD students

  • Nathanaël Gross-Humbert

    • Title : Diversty and Envy-Freness in multiagent resource allocation with groups of agents
    • Defended by September 2024
    • Supervisors: Aurélie Beynier, Nawal Benabbou
  • Parham Shams

    • Title: Procedures based on exchanges and new relaxations of envy-freeness in Fair Division of Indivisible Goods
    • Defended by December 2023
    • Supervisors: Aurélie Beynier, Sylvain Bouveret and Nicolas Maudet
  • Anastasia – Jonathan Damamme

    • Title: Distributed Resource Allocation
    • Defended by December 2016
    • Supervisors: Aurélie Beynier and Nicolas Maudet
  • Emmanuel Hadoux

    • Title: Markovian sequential decision-making in non-stationary environments: application to argumentative debates
    • Defended by November 2015
    • Supervisors: Aurélie Beynier, Nicolas Maudet and Paul Weng
  • Patrick Simo-Kanmeugne

    • Title: Algorithms for realistic pedestrian navigation in urban environments
    • Defended by July 2014
    • Supervisor: Aurélie Beynier
  • Guillaume Lozenguez

    • Title:Cooperative strategies for fleets of mobile robots in open and dynamic systems
    • Defended by December 2012
    • Supervisors: Aurélie Beynier, Lounis Adouane, Philippe Martinet and Abdel-Illah Mouaddib

Distinctions

  • Best paper award at ICTAI 2016: Cooperative Multiagent Patrolling for Detecting Multiple Illegal Actions Under Uncertainty , A. Beynier International Conference on Tools with Artificial Intelligence (ICTAI), San José, United States. Proceedings of 28th International Conference on Tools with Artificial Intelligence (ICTAI 2016), 2016.

Academic and industrial projects

  • Projet 80 PRIME « Intelligence artificielle pour comprendre la dynamique des décisions et comportements collectifs » (started by October 2024)
  • MITI project ALgoJust (24 months, call AAP CNRS 2023)
  • MITI project Negoclim (24 months, call AAP CNRS 2023)
  • ANR project AGGREEY – An argumentation-based platform for e-democracy (48 months, started by January 2023) website
  • ANR project SKYDATA - A New Data Paradigm: Intelligent and Self-Managed Data (48 months, started by January 2023)
  • ANR project Themis (48 months, started by March 2021): THeory and Evidence to Measure Influence in Social structures website
  • Research industrial contract with Dr. Tatsuya Iwase from Toyota Motor, 2019-2022.
  • ANR project CoCoRICo-CoDec (48+6 months, ended by July 2019): Computation, Communication, Rationality and Incentives in Collective and Cooperative Decision Making
  • ANR project LARDONS (48+6 months, ended by July 2015): Learning and Reasoning for Deciding Optimally using Numerical and Symbolic information
  • FUI project Terra Dynamica (36+6 mois, fin en juillet 2013): simulating navigation behaviors in urban environments.
  • ANR project R-Discover (48 months, ended by December 2012): Mobile robot networks: Decentralized omnivision-based space coverage. Cooperative perception, localization and navigation.