Reproduction, development, and individual interactions are essential topics in artificial life. The cellular automata, which can handle these in a composite way, is highly restricted in its form and behavior because it represents life as a pattern of cells. In contrast, the virtual creatures proposed by Karl Sims have a very high degree of freedom in terms of morphology and behavior. However, they have limited expressive capacity in terms of those viewpoints. This study carefully extracts the characteristics of the cellular automata and Sims models to propose a new artificial life model that can simulate reproduction, development, and individual interactions while exhibiting high expressive power for morphology and behavior. The simulation was performed by sequentially reading a book with genetic information and repeatedly executing four actions: expansion, connection, disconnection, and transition. The virtual creatures in the proposed model exhibit unique survival strategies and lifestyles and acquire interesting properties in reproduction, development, and individual interactions while having freedom in morphology and behavior.
翻译:能够以复合方式处理这些现象的细胞自生体模型在形式和行为上受到高度限制,因为它代表着作为细胞模式的生命。相反,Karl Sims提出的虚拟生物在形态学和行为方面有很大程度的自由度。然而,从这些观点来看,这些生物的表达能力有限。这项研究仔细地提取了细胞自生体模型和Sims模型的特性,以提出一个新的人工生命模型,可以模拟复制、发展和个人互动,同时展现出形态学和行为的高度表达力。模拟是按顺序阅读一本包含遗传信息的书,并反复执行四种行动:扩展、连接、断开和转变。拟议模型中的虚拟生物展示了独特的生存战略和生活方式,并在形态学和行为上享有自由,在生殖、发展和个人互动方面获得了有趣的特性。