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Black-Box Targeted Reward Poisoning Attack Against Online Deep Reinforcement Learning
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We propose the first black-box targeted attack against online deep reinforcement learning through reward poisoning during training time. Our attack is applicable to general environments with unknown dynamics learned by unknown algorithms and requires limited attack budgets and computational resources. We leverage a general framework and find conditions to ensure efficient attack under a general assumption of the learning algorithms. We show that our attack is optimal in our framework under the conditions. We experimentally verify that with limited budgets, our attack efficiently leads the learning agent to various target policies under a diverse set of popular DRL environments and state-of-the-art learners.
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Cited by 1 Pith paper
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Online Poisoning Attack Against Reinforcement Learning under Black-box Environments
An online attacker knowing only which states are reachable can poison rewards and transitions to make a Q-learning agent follow a target policy in a maze.
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