Grounding Language for Transfer in Deep Reinforcement Learning
Author(s) -
Karthik Narasimhan,
Regina Barzilay,
Tommi Jaakkola
Publication year - 2018
Publication title -
journal of artificial intelligence research
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.79
H-Index - 123
eISSN - 1943-5037
pISSN - 1076-9757
DOI - 10.1613/jair.1.11263
Subject(s) - reinforcement learning , computer science , variety (cybernetics) , transfer of learning , representation (politics) , artificial intelligence , task (project management) , differentiable function , domain (mathematical analysis) , component (thermodynamics) , meaning (existential) , machine learning , mathematics , management , politics , political science , law , economics , psychotherapist , thermodynamics , psychology , mathematical analysis , physics
In this paper, we explore the utilization of natural language to drive transfer for reinforcement learning (RL). Despite the wide-spread application of deep RL techniques, learning generalized policy representations that work across domains remains a challenging problem. We demonstrate that textual descriptions of environments provide a compact intermediate channel to facilitate effective policy transfer. Specifically, by learning to ground the meaning of text to the dynamics of the environment such as transitions and rewards, an autonomous agent can effectively bootstrap policy learning on a new domain given its description. We employ a model-based RL approach consisting of a differentiable planning module, a model-free component and a factorized state representation to effectively use entity descriptions. Our model outperforms prior work on both transfer and multi-task scenarios in a variety of different environments. For instance, we achieve up to 14% and 11.5% absolute improvement over previously existing models in terms of average and initial rewards, respectively.
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