[1]李梅. 三值光学计算机实验系统的设计与实现[J].计算机技术与发展,2016,26(10):192-195.
 LI Mei. Design and Realization of Ternary Logic Optical Computer Lab System[J].,2016,26(10):192-195.
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 三值光学计算机实验系统的设计与实现()
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《计算机技术与发展》[ISSN:1006-6977/CN:61-1281/TN]

卷:
26
期数:
2016年10期
页码:
192-195
栏目:
应用开发研究
出版日期:
2016-10-10

文章信息/Info

Title:
 Design and Realization of Ternary Logic Optical Computer Lab System
文章编号:
1673-629X(2016)10-0192-04
作者:
 李梅
 西安工业大学 计算机科学与工程学院
Author(s):
 LI Mei
关键词:
 三值光学计算机实验系统可重构三值逻辑
Keywords:
 Ternary Optical Computerlab systemreconfigurationternary  logic
分类号:
TP301
文献标志码:
A
摘要:
 三值光学计算机的研究过程中发现了多值逻辑运算器的降值设计理论。在降值设计理论的指导下设计完成了以包括编码器、运算器和解码器的三值光学逻辑处理器为核心运算部件的三值光学计算机实验系统。围绕着该处理器设计完成了实验系统的总体结构,主要包含电控制部分和光运算部分。该实验系统充分利用光的空间巨并行性,拥有很大的数据宽度,是验证三值光学计算机基本原理、总体结构的重要平台。该系统的研制成功验证了三值逻辑光计算机原理和降值设计理论的正确性。
Abstract:
 Decrease-radix design theory is found during the research work of Ternary Optical Computer. Its experimental system with the core component of ternary optical logical processor which includes coder,calculator and decoder is completed under the guidance of de-crease-radix design theory. The integral framework of the experimental system has been completed around the special processor,which has both electrically controlling part and optically computing part. This system utilizes the space parallelism feature of light and therefore has a very large bandwidth. It is an important platform to verify Ternary Optical Computer’ s basic principle and the integral framework. The success of putting it into realities verifies the correctness of its principle and decrease-radix design theory.

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更新日期/Last Update: 2016-11-29