RoboVerse unifies seven simulators, 15 benchmarks, and 510.5k migrated trajectories into one platform with a four-level generalization benchmark, claiming better robot learning and sim-to-real transfer.
RL STaR Platform: Reinforcement Learning for Simulation based Training of Robots
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abstract
Reinforcement learning (RL) is a promising field to enhance robotic autonomy and decision making capabilities for space robotics, something which is challenging with traditional techniques due to stochasticity and uncertainty within the environment. RL can be used to enable lunar cave exploration with infrequent human feedback, faster and safer lunar surface locomotion or the coordination and collaboration of multi-robot systems. However, there are many hurdles making research challenging for space robotic applications using RL and machine learning, particularly due to insufficient resources for traditional robotics simulators like CoppeliaSim. Our solution to this is an open source modular platform called Reinforcement Learning for Simulation based Training of Robots, or RL STaR, that helps to simplify and accelerate the application of RL to the space robotics research field. This paper introduces the RL STaR platform, and how researchers can use it through a demonstration.
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cs.RO 1years
2025 1verdicts
CONDITIONAL 1representative citing papers
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RoboVerse: Towards a Unified Platform, Dataset and Benchmark for Scalable and Generalizable Robot Learning
RoboVerse unifies seven simulators, 15 benchmarks, and 510.5k migrated trajectories into one platform with a four-level generalization benchmark, claiming better robot learning and sim-to-real transfer.