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On Self-assembly in Population P Systems

机译:人口P系统中的自组装

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摘要

We introduce a model of self-assembly P systems as devices that use some of the features of population P systems to progressively grow a graph structure by forming new bonds between the existing cells and some new cells which are brought into the system step by step. The new cells are then able to self-assemble locally either at the level of cells or at the level of neighbourhoods of cells by using bond-making rules according to a specific self-assembly model. We describe two self-assembly models, called respectively parallel single-point self-assembly and parallel multi-point self-assembly. Then, we precisely state the problem of programmable self-assembly for P systems as the problem of uniquely generating a given graph by means of self-assembly P systems. In this respect, we show how to define a self-assembly P systems that uniquely generates a complete binary tree by using a "minimal" set of resources.
机译:我们介绍一种自组装P系统的模型,该模型是使用种群P系统的某些功能通过在现有单元格和逐步引入到系统中的一些新单元格之间形成新的键来逐渐增长图结构的设备。然后,根据特定的自组装模型,通过使用成键规则,新的细胞能够在细胞水平或在细胞邻域水平上进行局部自组装。我们描述了两个自组装模型,分别称为并行单点自组装和并行多点自组装。然后,我们将P系统的可编程自组装问题精确地表述为通过自组装P系统唯一生成给定图的问题。在这方面,我们展示了如何定义一个自组装P系统,该系统通过使用“最小”资源集唯一地生成完整的二叉树。

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