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Trustworthy Reinforcement Learning Against Intrinsic Vulnerabilities: Robustness, Safety, and Generalizability

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arxiv 2209.08025 v1 pith:WLNNFXWW submitted 2022-09-16 cs.LG

classification cs.LG
keywords learningreinforcementsafetytrustworthyvulnerabilitiesconsideringgeneralizabilityintrinsic
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A trustworthy reinforcement learning algorithm should be competent in solving challenging real-world problems, including {robustly} handling uncertainties, satisfying {safety} constraints to avoid catastrophic failures, and {generalizing} to unseen scenarios during deployments. This study aims to overview these main perspectives of trustworthy reinforcement learning considering its intrinsic vulnerabilities on robustness, safety, and generalizability. In particular, we give rigorous formulations, categorize corresponding methodologies, and discuss benchmarks for each perspective. Moreover, we provide an outlook section to spur promising future directions with a brief discussion on extrinsic vulnerabilities considering human feedback. We hope this survey could bring together separate threads of studies together in a unified framework and promote the trustworthiness of reinforcement learning.

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Cited by 1 Pith paper

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

  1. Safe Reinforcement Learning using Finite-Horizon Gradient-based Estimation

    cs.LG 2024-12 conditional novelty 6.0 of 10

    The paper introduces Gradient-based Estimation (GBE), a Taylor-expansion method using analytic trajectory gradients, and the trust-region algorithm CGPO for safe RL with finite-horizon constraints.

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