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Lifelong Reinforcement Learning with Modulating Masks

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arxiv 2212.11110 v3 pith:TUWECINO submitted 2022-12-21 cs.LG cs.AIstat.ML

classification cs.LGcs.AIstat.ML
keywords learningtasksmasksknowledgelifelongmodulatingclassificationdeal
verification ladder T0 review T1 audit T2 compute T3 formal
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Lifelong learning aims to create AI systems that continuously and incrementally learn during a lifetime, similar to biological learning. Attempts so far have met problems, including catastrophic forgetting, interference among tasks, and the inability to exploit previous knowledge. While considerable research has focused on learning multiple supervised classification tasks that involve changes in the input distribution, lifelong reinforcement learning (LRL) must deal with variations in the state and transition distributions, and in the reward functions. Modulating masks with a fixed backbone network, recently developed for classification, are particularly suitable to deal with such a large spectrum of task variations. In this paper, we adapted modulating masks to work with deep LRL, specifically PPO and IMPALA agents. The comparison with LRL baselines in both discrete and continuous RL tasks shows superior performance. We further investigated the use of a linear combination of previously learned masks to exploit previous knowledge when learning new tasks: not only is learning faster, the algorithm solves tasks that we could not otherwise solve from scratch due to extremely sparse rewards. The results suggest that RL with modulating masks is a promising approach to lifelong learning, to the composition of knowledge to learn increasingly complex tasks, and to knowledge reuse for efficient and faster learning.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score.

  1. LIBERO: Benchmarking Knowledge Transfer for Lifelong Robot Learning

    cs.AI 2023-06 conditional novelty 8.0 of 10

    LIBERO is a new benchmark for lifelong robot learning that evaluates transfer of declarative, procedural, and mixed knowledge across 130 manipulation tasks with provided demonstration data.

  2. Balancing Plasticity and Stability with Fast and Slow Successor Features

    cs.LG 2026-05 unverdicted novelty 4.0 of 10

    Synaptic consolidation applied to multi-timescale successor features yields better performance than plasticity-focused methods in RL under gradual environmental drift.

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