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Learning Navigation Behaviors End-to-End With AutoRL

Hao-Tien Lewis Chiang, Aleksandra Faust, Marek Fišer, Anthony Francis

发表年份
2019
引用次数
230
访问权限
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摘要

We learn end-to-end point-to-point and pathfollowing navigation behaviors that avoid moving obstacles. These policies receive noisy lidar observations and output robot linear and angular velocities. The policies are trained in small, static environments with AutoRL, an evolutionary automation layer around reinforcement learning (RL) that searches for a deep RL reward and neural network architecture with large-scale hyper-parameter optimization. AutoRL first finds a reward that maximizes task completion and then finds a neural network architecture that maximizes the cumulative of the found reward. Empirical evaluations, both in simulation and on-robot, show that AutoRL policies do not suffer from the catastrophic forgetfulness that plagues many other deep reinforcement learning algorithms, generalize to new environments and moving obstacles, are robust to sensor, actuator, and localization noise, and can serve as robust building blocks for larger navigation tasks. Our path-following and point-to-point policies are, respectively, 23% and 26% more successful than comparison methods across new environments.

关键词

Reinforcement learningComputer scienceEnd-to-end principleRobotArtificial intelligenceNoise (video)Point (geometry)Artificial neural networkTask (project management)Motion planning

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