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Recursive Combination Has Adaptability in Diversifiability of Production and Material Culture

机译:递归组合在生产和物质文化的多样性中具有适应性

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摘要

It has been suggested that hierarchically structured symbols, a remarkable feature of human language, are produced via the operation of recursive combination. Recursive combination is frequently observed in human behavior, not only in language but also in action sequences, mind-reading, technology, etc. in contrast, it is rarely observed in animals. Why is it that only humans use this operation? What is the adaptability of recursive combination? We aim (1) to identify the environmental feature(s) in which recursive combination is effective for survival and reproduction, and that has facilitated the evolution of this ability, and (2) to demonstrate the possible evolutionary processes of recursive combination. To achieve this, we constructed an evolutionary simulation of agents that generated products using recursive combination and used the results to explore the types of fitness functions (that reflect the kinds of adaptive environments) that give rise to this ability. We identified two types of adaptability of the recursive combination: (1) diversifiability of production and (2) diversifiability of products. Through the former, recursive combination promotes robustness against failure of production caused by inaccurate manipulations or irreversible changes. In an environment in which diversified products are preferable, sharing a portion of the production process for these products entails producing multiple products in which recursive combination plays a key role. We suppose that recursive combination works as a driving force of material culture. Finally, we discuss the possible evolutionary scenarios of recursive combination that is later generalized to encompass many aspects of human cognition, including human language.
机译:已经提出,通过递归组合的操作来产生分层结构的符号,这是人类语言的显着特征。递归组合经常在人类行为中观察到,不仅在语言中,而且在动作序列,思维理解,技术等方面也是如此,相比之下,在动物中很少观察到。为什么只有人类才能使用此操作?递归组合的适应性是什么?我们的目标是(1)识别递归组合对生存和繁殖有效的环境特征,并促进这种能力的发展;以及(2)证明递归组合的可能演化过程。为实现此目的,我们构建了使用递归组合生成产品的主体的进化仿真,并使用结果探索了产生此功能的适应度函数的类型(反映了适应性环境的种类)。我们确定了递归组合的两种适应性类型:(1)生产的多样化和(2)产品的多样化。通过前者,递归组合可以提高鲁棒性,以防止由于不正确的操作或不可逆的更改而导致的生产失败。在需要多样化产品的环境中,为这些产品共享一部分生产过程需要生产多种产品,其中递归组合起着关键作用。我们假设递归组合是物质文化的驱动力。最后,我们讨论了递归组合的可能进化方案,后来将其概括为涵盖人类认知的许多方面,包括人类语言。

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