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Symbiosis of Spontaneous Hypercycles through Self-Compartmentation

机译:通过自隔室共生自发性高循环

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The objective of this paper is to develop a mechanism enabling spontaneous hypercycles to coexist. Hypercycle models, arising from local interactions, are a promising approach to emergent computation because of their powerful self-organizing behavior and flexible reaction schemes. However, theoretical studies have shown that this powerful self-organizing ability fails to allow the symbiosis of spontaneous hypercycles, and, therefore, some missing links still remain to be solved concerning the process by which hypercycles manage to conserve themselves from others. This paper implements a dynamics that works as a filter to control local interactions, and demonstrates a process whereby macro conservative hypercycles may emerge through self-organizing compartmentation. The crucial point of this study regards the meta-interations that take place between the genotypic atomic reactions and the phenotypic potential field.
机译:本文的目的是开发一种机制,使自发超周期能够共存。由局部相互作用产生的超周期模型由于其强大的自组织行为和灵活的反应方案而成为一种有希望的新兴计算方法。但是,理论研究表明,这种强大的自组织能力无法使自发性高循环共生,因此,关于高循环设法保护自己免受他人侵害的过程,仍有一些缺失的联系尚待解决。本文实现了一种动力学,该动力学充当了控制局部相互作用的过滤器,并演示了一个过程,在该过程中,宏观保守超循环可能会通过自组织分隔而出现。这项研究的关键点在于基因型原子反应与表型势场之间发生的元相互作用。

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