English

EINCASM: Emergent Intelligence in Neural Cellular Automaton Slime Molds

Neural and Evolutionary Computing 2023-08-03 v1 Artificial Intelligence Computers and Society Multiagent Systems

Abstract

This paper presents EINCASM, a prototype system employing a novel framework for studying emergent intelligence in organisms resembling slime molds. EINCASM evolves neural cellular automata with NEAT to maximize cell growth constrained by nutrient and energy costs. These organisms capitalize physically simulated fluid to transport nutrients and chemical-like signals to orchestrate growth and adaptation to complex, changing environments. Our framework builds the foundation for studying how the presence of puzzles, physics, communication, competition and dynamic open-ended environments contribute to the emergence of intelligent behavior. We propose preliminary tests for intelligence in such organisms and suggest future work for more powerful systems employing EINCASM to better understand intelligence in distributed dynamical systems.

Keywords

Cite

@article{arxiv.2305.13425,
  title  = {EINCASM: Emergent Intelligence in Neural Cellular Automaton Slime Molds},
  author = {Aidan Barbieux and Rodrigo Canaan},
  journal= {arXiv preprint arXiv:2305.13425},
  year   = {2023}
}

Comments

Extended Abstract for the 2023 ALife conference. 2 Pages, 1 Figure