Autonomous thermodynamic cycles via robotic mobility and sen
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Source roundup from published reports. Claims below are attributed to their publishers, not independently verified. arXiv Robotics — research abstracts: Autonomous thermodynamic cycles via robotic mobility and sensing. This paper presents autonomous thermodynamic cycles enabled by robotic mobility and sensing, allowing robots to perform energy conversion by accessing spatially varying temperature fields. The authors experimentally real…
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- arXiv Robotics — research abstractsAutonomous thermodynamic cycles via robotic mobility and sensing
This paper presents autonomous thermodynamic cycles enabled by robotic mobility and sensing, allowing robots to perform energy conversion by accessing spatially varying temperature fields. The authors experimentally realize this concept using multistable gas-filled capsules that circulate within a thermal gradient, revealing how rapid transitions in energy states enable a mobile heat engine to harvest and store energy. By optimizing locomotion paths that balance motion cost and energy harvesting, the study demonstrates the emergence of thermodynamic cycles in autonomous systems.
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