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Reprogrammable sequencing for physically intelligent under-actuated robots

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arxiv 2409.03737 v1 pith:5HJNBKIA submitted 2024-09-05 cs.RO cond-mat.other

Reprogrammable sequencing for physically intelligent under-actuated robots

classification cs.RO cond-mat.other
keywords approachautonomouslycapablecomputationalfreedomintelligentinteractionsmechanisms
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Programming physical intelligence into mechanisms holds great promise for machines that can accomplish tasks such as navigation of unstructured environments while utilizing a minimal amount of computational resources and electronic components. In this study, we introduce a novel design approach for physically intelligent under-actuated mechanisms capable of autonomously adjusting their motion in response to environmental interactions. Specifically, multistability is harnessed to sequence the motion of different degrees of freedom in a programmed order. A key aspect of this approach is that these sequences can be passively reprogrammed through mechanical stimuli that arise from interactions with the environment. To showcase our approach, we construct a four degree of freedom robot capable of autonomously navigating mazes and moving away from obstacles. Remarkably, this robot operates without relying on traditional computational architectures and utilizes only a single linear actuator.

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Cited by 1 Pith paper

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    cond-mat.soft 2024-09 unverdicted novelty 6.0

    A bar-and-spring mechanical hysteron enables tunable interactions of general sign, providing a physical design platform for arbitrary non-equilibrium mechanical behaviors.