四维均匀收缩金字塔自动机

M. Nagatomo, M. Sakamoto, Chongyang Sun, S. Yano, Satoshi Ikeda, Takao Ito, Tsutomu Ito, Y. Uchida, Tsunehiro Yoshinaga
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引用次数: 1

摘要

元胞自动机是一种著名的并行自动机。细胞自动机不仅从形式语言理论的角度进行了研究,而且从模式识别的角度进行了研究。元胞自动机可以分为几种类型。收缩金字塔自动机也是各种元胞自动机的一种平行模型。具有四维层的均匀收缩金字塔自动机(4- hspa)是四维细胞阵列的金字塔堆叠,其中最下面的四维层(级别0)的大小为A (A≥1),下一个最低的4(A -1),依此类推,(A -1)第一个四维层(级别(A -1))由单个细胞组成,称为根。每个单元表示一个相同的有限状态机。当且仅当根单元进入接受状态时,才接受输入。如果对于每个尺寸为4a (A≥1)的四维磁带,该4-HSPA在时间为A -1时接受四维磁带,则称该4-HSPA为实时4-HSPA。此外,一维四维元胞自动机(1- 4ca)可以被认为是一维二维元胞自动机到四维的自然延伸。如果最后一个特殊单元达到最终状态,则接受初始配置。如果从处于非静止状态的四维细胞阵列开始,该特殊细胞达到最终状态,则称1-4CA为实时1-4CA。本文提出了一种具有四维层的同质收缩自动机(4-HSPA),并研究了实时4-HSPA的一些特性。具体来说,我们首先研究了实时4-HSPA和实时1-4CA的接受能力之间的关系。接下来我们展示了实时4-HSPA对四维连接磁带的可识别性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Four-Dimensional Homogeneous Systolic Pyramid Automata
Cellular automaton is famous as a kind of the parallel automaton. Cellular automata were investigated not only in the viewpoint of formal language theory, but also in the viewpoint of pattern recognition. Cellular automata can be classified into some types. A systolic pyramid automata is also one parallel model of various cellular automata. A homogeneous systolic pyramid automaton with four-dimensional layers (4-HSPA) is a pyramid stack of four-dimensional arrays of cells in which the bottom four-dimensional layer (level 0) has size an (a≥1), the next lowest 4(a-1), and so forth, the (a-1)st fourdimensional layer (level (a-1)) consisting of a single cell, called the root. Each cell means an identical finite-state machine. The input is accepted if and only if the root cell ever enters an accepting state. A 4-HSPA is said to be a real-time 4-HSPA if for every four-dimensional tape of size 4a (a≥1), it accepts the fourdimensional tape in time a-1. Moreover, a 1- way fourdimensional cellular automaton (1-4CA) can be considered as a natural extension of the 1-way two-dimensional cellular automaton to four-dimension. The initial configuration is accepted if the last special cell reaches a final state. A 1-4CA is said to be a real- time 1-4CA if when started with fourdimensional array of cells in nonquiescent state, the special cell reaches a final state. In this paper, we proposed a homogeneous systolic automaton with four-dimensional layers (4-HSPA), and investigated some properties of real-time 4-HSPA. Specifically, we first investigated the relationship between the accepting powers of real-time 4-HSPA’s and real-time 1-4CA’s. We next showed the recognizability of four-dimensional connected tapes by real-time 4-HSPA’s.
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