Normal forms in Virus Machines

A. Ramírez-de-Arellano, F. G. C. Cabarle, D. Orellana-Martín, M. J. Pérez-Jiménez
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Abstract

In the present work, we further study the computational power of virus machines (VMs in short). VMs provide a computing paradigm inspired by the transmission and replication networks of viruses. VMs consist of process units (called hosts) structured by a directed graph whose arcs are called channels and an instruction graph that controls the transmissions of virus objects among hosts. The present work complements our understanding of the computing power of VMs by introducing normal forms; these expressions restrict the features in a given computing model. Some of the features that we restrict in our normal forms include (a) the number of hosts, (b) the number of instructions, and (c) the number of virus objects in each host. After we recall some known results on the computing power of VMs we give our normal forms, such as the size of the loops in the network, proving new characterisations of family of sets, such as the finite sets, semilinear sets, or NRE.
病毒机器中的正则表达式
在本研究中,我们进一步研究了病毒机器(简称 VM)的计算能力。虚拟机提供了一种计算范式,其灵感来自病毒的传输和复制网络。虚拟机由有向图(其弧称为通道)和控制主机间病毒对象传输的指令图构成的进程单元(称为主机)组成。本研究通过引入正则表达式补充了我们对虚拟机计算能力的理解;这些表达式限制了给定计算模型中的特征。我们在正则表达式中限制的一些特征包括:(a) 主机数量;(b) 指令数量;(c) 每个主机中病毒对象的数量。在回顾了关于虚拟机计算能力的一些已知结果后,我们给出了我们的正则表达式,如网络中循环的大小,证明了集合族的新特征,如有限集合、半线性集合或 NRE。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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