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Noise Resistant Full Adder Using DNA Strands

机译:使用DNA链的抗噪声全加法器

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摘要

A DNA computer requires DNA processor. A fundamental component of the processor is an arithmetic logic unit (ALU). The ALU performs all arithmetic operations in binary format, and the most critical operation is two's complement addition, which can involve addition, subtraction, multiplication, and division. Two's complement adders can be synthesized using multiple full adders. In this paper, a noise-resistant DNA computing full adder circuit is presented. The proposed adder circuit, unlike other circuits, takes strands as inputs and produces the results in the form of DNA strands. This is an important characteristic, since it enables multiple-level design. In addition, since all possible hybridization in this circuit is desired, it can control an abundance of unwanted strands. As a result, the synthesized adder is noise-resistant. While other multi-level designs might be possible (e.g., Nor-Nor design), the proposed design implements the full adder circuit as an integrated gate. The benefit of having an integrated circuit is that it eliminates the need for separate suppressors and activators. Before synthesizing the adder, we implemented AND, OR, and inverter gates and then extended these basic components to implement the desired circuit. The proposed designs were implemented and tested using Visual DSD programming and simulation tool.
机译:DNA计算机需要DNA处理器。处理器的基本组件是算术逻辑单元(ALU)。 ALU以二进制格式执行所有算术运算,最关键的运算是二进制补码加法,可能涉及加法,减法,乘法和除法。二进制补码加法器可以使用多个全加法器合成。本文提出了一种抗噪声的DNA计算全加法器电路。与其他电路不同,建议的加法器电路将链作为输入,并以DNA链的形式产生结果。这是一个重要的特征,因为它可以进行多级设计。另外,由于期望该回路中所有可能的杂交,因此它可以控制大量不需要的链。结果,合成的加法器是抗噪声的。尽管其他多级设计也是可能的(例如,Nor-Nor设计),但是所提出的设计将完整的加法器电路实现为集成门。拥有集成电路的好处是消除了对单独的抑制器和激活器的需求。在合成加法器之前,我们实现了AND,OR和反相器门,然后扩展了这些基本组件以实现所需的电路。拟议的设计是使用Visual DSD编程和仿真工具实施和测试的。

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