残差类系统中表示的两个数的残数的算术运算的表格实现方法

IF 0.2 Q4 COMPUTER SCIENCE, HARDWARE & ARCHITECTURE Radio Electronics Computer Science Control Pub Date : 2022-12-03 DOI:10.15588/1607-3274-2022-4-2
V. Krasnobayev, A. S. Yanko, D. M. Kovalchuk
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引用次数: 1

摘要

上下文。实现加法、减法和乘法的模块化算术运算,采用基于表格法的表格乘法代码。研究的对象是对残类系统中表示的数的残进行基本算术运算的表格实现过程。目标。工作的目标是开发基于使用表格乘法代码的两个数字的乘法,加法和减法的算术运算的表格实现方法。方法。提出了实现整数算术加法、减法和乘法的模运算的表格方法,以供考虑。为了减少计算机系统中实现加法、减法和乘法模块化运算的表格操作单元的设备数量,通过减少表节点中用于实现基于表乘法代码的算术运算的重合电路和,开发了两种执行加法和减法算术模块化运算的方法。这些方法都是基于表格乘法的代码,使用表格乘法可以减少表格操作单元的设备数量。因此,尽管基于表格乘法代码的加法、减法和乘法的模块化运算表的数字结构有所不同,但已经创建了两种新的表格方法来实现算术加法和减法的模块化运算。在此基础上,开发了模块化加法和减法运算的表格执行算法。利用这些算法,可以合成一个结构简单、高可靠和快速的表运算单元,该单元运行在剩余类系统中,该系统基于三个独立的永久存储设备(只读存储器),每个设备仅实现模块运算的相应完整表值的四分之一,这在早期的理论表格算法中是不可能的。结果。本文所提出的方法在用表格程序进行算术加法、减法和乘法的模运算时得到了理论证明和研究。结论。所进行的整数算术加法和减法模运算的实现实例可以看作是给出的实验。所得结果有可能推荐它们在残差类的非位置数系统的计算机系统设计中实际使用。进一步研究的前景可能是在使用表格乘法代码的基础上创建实现整数算术模除法的表格方法。
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METHODS FOR TABULAR IMPLEMENTATION OF ARITHMETIC OPERATIONS OF THE RESIDUES OF TWO NUMBERS REPRESENTED IN THE SYSTEM OF RESIDUAL CLASSES
Context. Implementation of modular arithmetic operations of addition, subtraction and multiplication by a tabular method based on the use of the tabular multiplication code. The object of the study is the process of tabular implementation of basic arithmetic operations on the residues of numbers represented in the system of residual classes. Objective. The goal of the work is to develop methods for the tabular implementation of the arithmetic operations of multiplication, addition and subtraction of the residues of two numbers based on the use of the tabular multiplication code. Method. Tabular methods for implementing integer arithmetic modular operations of addition, subtraction and multiplication are proposed for consideration. In order to reduce the amount of equipment for a tabular operating unit of computer systems that implements modular operations of addition, subtraction and multiplication by reducing the coincidence circuits AND in the nodes of the tables for implementing arithmetic operations based on the code of table multiplication, two methods for performing arithmetic modular operations of addition and subtraction have been developed. These methods are based on the code of tabular multiplication, the use of which will reduce the amount of equipment of the tabular operating unit. Thus, despite the difference in the digital structure of the tables of modular operations of addition, subtraction and multiplication based on the use of the tabular multiplication code, two new tabular methods for implementing arithmetic modular operations of addition and subtraction have been created. Based on them, algorithms for tabular execution of modular arithmetic operations of addition and subtraction have been developed. Using these algorithms, it is possible to synthesize a structurally simple, highly reliable and fast table operating unit that operates in a system of residual classes, which is based on three separate permanent storage devices (read-only memory), each of which implements only one fourth of the corresponding complete table of values of the modular operation, what is earlier in the theory tabular arithmetic was supposed to be impossible. Results. The developed methods are justified theoretically and studied when performing arithmetic modular operations of addition, subtraction and multiplication using tabular procedures. Conclusions. The conducted examples of the implementation of integer arithmetic modular operations of addition and subtraction can be considered as presented experiments. The results obtained make it possible to recommend them for use in practice in the design of computer systems operating in a non-positional number system in residual classes. Prospects for further research may be to create a tabular method for implementing integer arithmetic modular division operations based on the use of the tabular multiplication code.
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来源期刊
Radio Electronics Computer Science Control
Radio Electronics Computer Science Control COMPUTER SCIENCE, HARDWARE & ARCHITECTURE-
自引率
20.00%
发文量
66
审稿时长
12 weeks
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