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Stabilizing Unsupervised Environment Design with a Learned Adversary

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arxiv 2308.10797 v2 pith:MFFSB25P submitted 2023-08-21 cs.LG cs.AI

classification cs.LGcs.AI
keywords tasksdesignenvironmentpairedagentagentsmethodstraining
verification ladder T0 review T1 audit T2 compute T3 formal
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A key challenge in training generally-capable agents is the design of training tasks that facilitate broad generalization and robustness to environment variations. This challenge motivates the problem setting of Unsupervised Environment Design (UED), whereby a student agent trains on an adaptive distribution of tasks proposed by a teacher agent. A pioneering approach for UED is PAIRED, which uses reinforcement learning (RL) to train a teacher policy to design tasks from scratch, making it possible to directly generate tasks that are adapted to the agent's current capabilities. Despite its strong theoretical backing, PAIRED suffers from a variety of challenges that hinder its practical performance. Thus, state-of-the-art methods currently rely on curation and mutation rather than generation of new tasks. In this work, we investigate several key shortcomings of PAIRED and propose solutions for each shortcoming. As a result, we make it possible for PAIRED to match or exceed state-of-the-art methods, producing robust agents in several established challenging procedurally-generated environments, including a partially-observed maze navigation task and a continuous-control car racing environment. We believe this work motivates a renewed emphasis on UED methods based on learned models that directly generate challenging environments, potentially unlocking more open-ended RL training and, as a result, more general agents.

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  1. Improving Environment Novelty Quantification for Effective Unsupervised Environment Design

    cs.LG 2025-02 conditional novelty 6.0 of 10

    CENIE augments regret-based unsupervised environment design with a GMM-based novelty score derived from the student's state-action coverage, improving zero-shot transfer in Minigrid, BipedalWalker, and CarRacing.

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