Design of ALU and Code Converter Using Matrix Calculation

Nirina Gilbert Rasolofoson, R. Andriambololona
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引用次数: 1

Abstract

Arithmetic Logic Unit (ALU) is a fundamental building block of a central processing unit (CPU) in any computing system. The ALU is the hardware that performs logical (and, or, xor) and basic arithmetic (addition, subtraction, multiplication, division) operations. Thus, its construction requires techniques in which the treatment of operands should be consistent with operations rules. In this paper, ALU based on matrix calculation introduced and developed by Raoelina Andriambololona is proposed. These techniques aim to remove illogic and inconsistent appearing in the international writing numeration with the usual rules in arithmetic. We also propose the design of code converters which convert Binary to BCD (Binary Coded Decimal) code and vice versa using matrix calculation.
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基于矩阵计算的ALU和代码转换器设计
算术逻辑单元(ALU)是任何计算系统中中央处理单元(CPU)的基本组成部分。ALU是执行逻辑(和、或、异)和基本算术(加、减、乘、除)操作的硬件。因此,它的构造需要使操作数的处理与操作规则一致的技术。本文提出了由Raoelina Andriambololona引入并开发的基于矩阵计算的ALU。这些技术的目的是为了消除国际书面语中出现的不合逻辑和不一致的现象,使之符合一般的算术规则。我们还提出了一种代码转换器的设计,可以使用矩阵计算将二进制代码转换为BCD(二进制编码十进制)代码,反之亦然。
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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CiteScore
0.60
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0.00%
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2
期刊介绍: The “Italian Journal of Pure and Applied Mathematics” publishes original research works containing significant results in the field of pure and applied mathematics.
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