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Evolving swimming soft-bodied creatures

, , , , and . 15th International Conference on the Synthesis and Simulation of Living Systems (ALIFE XV), page 6. (2016)

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Material properties affect evolutions ability to exploit morphological computation in growing soft-bodied creatures., , , , and . ALIFE, page 234-241. MIT Press, (2016)A minimal developmental model can increase evolvability in soft robots., , , and . GECCO, page 131-138. ACM, (2017)A WSN-based testbed for energy efficiency in buildings., , and . ISCC, page 990-993. IEEE Computer Society, (2011)Novelty-Based Evolutionary Design of Morphing Underwater Robots., , , and . GECCO, page 145-152. ACM, (2015)An intelligent system for electrical energy management in buildings., , and . ISDA, page 702-707. IEEE, (2011)Evolving swimming soft-bodied creatures, , , , and . 15th International Conference on the Synthesis and Simulation of Living Systems (ALIFE XV), page 6. (2016)Simulating the evolution of soft and rigid-body robots., , , , , and . GECCO (Companion), page 1117-1120. ACM, (2017)Evolving Optimal Swimming in Different Fluids: A Study Inspired by batoid Fishes., , , and . Living Machines, volume 8608 of Lecture Notes in Computer Science, page 23-34. Springer, (2014)Bipedal Walking of an Octopus-Inspired Robot., , , and . Living Machines, volume 8608 of Lecture Notes in Computer Science, page 35-46. Springer, (2014)Evolutionary discovery of self-stabilized dynamic gaits for a soft underwater legged robot., , , and . ICAR, page 337-344. IEEE, (2015)