Programmable self-assembly with chained soft cells: An algorithm to fold into 2-D shapes

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Abstract

Programmable self-assembly of chained modules holds potential for the automatic shape formation of morphologically adapted robots. However, current systems are limited to modules of uniform rigidity, which restricts the range of obtainable morphologies and thus the functionalities of the system. To address these challenges, we previously introduced "soft cells" as modules that can obtain different mechanical softness pre-setting. We showed that such a system can obtain a higher diversity of morphologies compared to state-of-the-art systems and we illustrated the system's potential by demonstrating the self-assembly of complex morphologies. In this paper, we extend our previous work and present an automatic method that exploits our system's capabilities in order to find a linear chain of soft cells that self-folds into a target 2-D shape. © 2014 Springer International Publishing Switzerland.

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Germann, J., Auerbach, J., & Floreano, D. (2014). Programmable self-assembly with chained soft cells: An algorithm to fold into 2-D shapes. In Lecture Notes in Computer Science (including subseries Lecture Notes in Artificial Intelligence and Lecture Notes in Bioinformatics) (Vol. 8575 LNAI, pp. 220–229). Springer Verlag. https://doi.org/10.1007/978-3-319-08864-8_21

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