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Merging pruning and neuroevolution: towards robust and efficient controllers for modular soft robots.

, , , , , and . Knowl. Eng. Rev., (2022)

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An Analysis of the Ingredients for Learning Interpretable Symbolic Regression Models with Human-in-the-loop and Genetic Programming., , , , and . ACM Trans. Evol. Learn. Optim., 4 (1): 5:1-5:30 (March 2024)An experimental comparison of evolved neural network models for controlling simulated modular soft robots., , , and . Appl. Soft Comput., (September 2023)Naturally Interpretable Control Policies via Graph-Based Genetic Programming., , and . EuroGP, volume 14631 of Lecture Notes in Computer Science, page 73-89. Springer, (2024)JGEA: a modular java framework for experimenting with evolutionary computation., , and . GECCO Companion, page 2009-2018. ACM, (2022)On the Schedule for Morphological Development of Evolved Modular Soft Robots., , and . EuroGP, volume 13223 of Lecture Notes in Computer Science, page 146-161. Springer, (2022)Merging pruning and neuroevolution: towards robust and efficient controllers for modular soft robots - Corrigendum., , , , , and . Knowl. Eng. Rev., (2022)On the effects of pruning on evolved neural controllers for soft robots., , , , and . GECCO Companion, page 1744-1752. ACM, (2021)An Investigation of Geometric Semantic GP with Linear Scaling., , , , , and . GECCO, page 1165-1174. ACM, (2023)On the Effects of Collaborators Selection and Aggregation in Cooperative Coevolution: An Experimental Analysis., and . EuroGP, volume 13986 of Lecture Notes in Computer Science, page 292-307. Springer, (2023)Merging pruning and neuroevolution: towards robust and efficient controllers for modular soft robots., , , , , and . Knowl. Eng. Rev., (2022)