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Severe Damage Recovery in Evolving Soft Robots through Differentiable Programming

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arxiv 2206.06674 v1 pith:V2T57YSA submitted 2022-06-14 cs.NE cs.LGq-bio.PEq-bio.TO

Severe Damage Recovery in Evolving Soft Robots through Differentiable Programming

classification cs.NE cs.LGq-bio.PEq-bio.TO
keywords damagerobotsautomatacellulardifferentiablemorphologicalneuralsevere
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Biological systems are very robust to morphological damage, but artificial systems (robots) are currently not. In this paper we present a system based on neural cellular automata, in which locomoting robots are evolved and then given the ability to regenerate their morphology from damage through gradient-based training. Our approach thus combines the benefits of evolution to discover a wide range of different robot morphologies, with the efficiency of supervised training for robustness through differentiable update rules. The resulting neural cellular automata are able to grow virtual robots capable of regaining more than 80\% of their functionality, even after severe types of morphological damage.

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