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Computational power of tissue P systems for generating control languages

机译:组织P系统产生控制语言的计算能力

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摘要

Tissue P systems are a class of distributed and parallel models of computation inspired by the way of communication among living cells or between cells and their environment. In this work, we investigate the computational power of tissue P systems, where each rule is assigned either with a label chosen from an alphabet or with the empty label k. The sequence of labels of rules applied during a halting computation is defined as the result of the computation, and the set of all results computed by a given tissue P system is called a control language. We prove that tissue P systems with antiport rules of weight one and without symport rules characterize regular languages; tissue P systems with antiport rules of weight at most two (resp., symport rules of weight at most two) without symport rules (resp., antiport rules) are universal. Tissue P systems with antiport rules of weight one and symport rules of weight one are also proved to be universal. These results show that the rule complexity is crucial for tissue P systems to achieve a desired computational power.
机译:组织P系统是一类分布式的并行计算模型,受活细胞之间或细胞与周围环境之间的通信方式的启发。在这项工作中,我们研究了组织P系统的计算能力,其中每个规则都分配有从字母表中选择的标签或空标签k。在停止计算期间应用的规则的标签的序列被定义为计算的结果,并且由给定组织P系统计算的所有结果的集合被称为控制语言。我们证明,具有权重为1的反端口规则且无共通规则的组织P系统具有常规语言的特征。具有最多两个反端口权重规则(分别为最大两个权重的同等权重规则)而没有同等规则(重,反端口规则)的组织P系统是通用的。具有权重为1的反端口规则和权重为1的同向规则的组织P系统也被证明是通用的。这些结果表明,规则复杂性对于组织P系统实现所需的计算能力至关重要。

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