[2211.13746] Melting Pot 2.0
Multi-agent artificial intelligence research promises a path to develop intelligent technologies that are more human-like and more human-compatible than those produced by "solipsistic" approaches, which do not consider interactions between agents. Melting Pot is a research tool developed to facilitate work on multi-agent artificial intelligence, and provides an evaluation protocol that measures generalization to novel social partners in a set of canonical test scenarios. Each scenario pairs a physical environment (a "substrate") with a reference set of co-players (a "background population"), to create a social situation with substantial interdependence between the individuals involved. For instance, some scenarios were inspired by institutional-economics-based accounts of natural resource management and public-good-provision dilemmas. Others were inspired by considerations from evolutionary biology, game theory, and artificial life. Melting Pot aims to cover a maximally diverse set of interdependencies and incentives. It includes the commonly-studied extreme cases of perfectly-competitive (zero-sum) motivations and perfectly-cooperative (shared-reward) motivations, but does not stop with them. As in real-life, a clear majority of scenarios in Melting Pot have mixed incentives. They are neither purely competitive nor purely cooperative and thus demand successful agents be able to navigate the resulting ambiguity. Here we describe Melting Pot 2.0, which revises and expands on Melting Pot. We also introduce support for scenarios with asymmetric roles, and explain how to integrate them into the evaluation protocol. This report also contains: (1) details of all substrates and scenarios; (2) a complete description of all baseline algorithms and results. Our intention is for it to serve as a reference for researchers using Melting Pot 2.0.
October 2023 Melting Pot 2.0 John P. Agapiou*,1 , Alexander Sasha Vezhnevets*,1 , Edgar A. Duéñez-Guzmán*,1 , Jayd Matyas1 , Yiran Mao1 , Peter Sunehag1 , Raphael Köster1 , Udari Madhushani1 , Kavya Kopparapu1 , Ramona Comanescu1 , DJ Strouse1 , Michael B. Johanson1 , Sukhdeep Singh1 , Julia Haas1 , Igor Mordatch2 , Dean Mobbs3 and Joel Z. Leibo*,1…
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