用于数字电路仿真的云服务

I. Hahanov, Igor Iemelianov, W. Gharibi, Tamer Bani Amer
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引用次数: 1

摘要

提出了一种基于可寻址存储器组件之间的事务来实现任何功能的仿真和验证数字系统的云服务QuaSim。描述了一种利用矢量形式(量子)来定义组合和顺序结构并在存储元件中实现它们的数字系统合成和分析的新方法;它与基于元件真值表的经典离散器件设计理论有本质区别。量子或量子位数据结构[1-5]用于实现计算过程,通过对输入、内部和输出变量的状态进行一元编码来提高数字系统分析的性能并减少内存体积,并且在FPGA存储元件中实现量子位向量,实现组合和顺序原语。在计算机系统设计实践中,实现仅基于量子存储器的描述数字元件的模型直接影响到产品成品率的提高,可以提高计算机产品的可靠性,降低设计和制造成本,并提供独立的人工远程和在线维修。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
QuaSim — Cloud service for digital circuits simulation
A cloud service QuaSim designed for simulation and verification of digital systems based on transactions between the addressable memory components to implement any functionality is proposed. A new approach to the synthesis and analysis of digital systems using vector form (quantum) for defining combinational and sequential structures to implement them in the memory elements is described; it is substantially different from the classical design theory of discrete devices based on the truth tables of the components. Quantum or qubit data structures are used [1-5] for the implementation of computational processes in order to improve the performance of digital systems analysis and reduce memory volume through unary coding the states of input, internal and output variables, and also the implementation of qubit vectors in the FPGA memory elements, which realize combinational and sequential primitives. Implementation of quantum memory-based-only models for describing digital components in the practice of designing computer systems directly affects the increase in product yield, allows improving the reliability of computer products, reducing the cost of designing and manufacturing, and providing standalone human-free remote & online repair.
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