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RealAnt: An Open-Source Low-Cost Quadruped for Education and Research in Real-World Reinforcement Learning
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RealAnt: An Open-Source Low-Cost Quadruped for Education and Research in Real-World Reinforcement Learning
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Current robot platforms available for research are either very expensive or unable to handle the abuse of exploratory controls in reinforcement learning. We develop RealAnt, a minimal low-cost physical version of the popular `Ant' benchmark used in reinforcement learning. RealAnt costs only $\sim$350 EUR (\$410) in materials and can be assembled in less than an hour. We validate the platform with reinforcement learning experiments and provide baseline results on a set of benchmark tasks. We demonstrate that the RealAnt robot can learn to walk from scratch from less than 10 minutes of experience. We also provide simulator versions of the robot (with the same dimensions, state-action spaces, and delayed noisy observations) in the MuJoCo and PyBullet simulators. We open-source hardware designs, supporting software, and baseline results for educational use and reproducible research.
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Cited by 1 Pith paper
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The Open Ant: A Robot Platform for Reinforcement Learning Research
The Open Ant is a physical, open-source quadruped modeled on the Gymnasium Ant that learns to walk from its own experience in about an hour with SARSA(λ) and SAC, and supports sim-to-real transfer.
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