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Simulation of Nanoscale Optical Signed Digit Addition Based on DNA-Strands

机译:基于DNA链的纳米级光学符号数字加法仿真

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Recently, the interest of most researchers is to find ways to design for biomaterials with certain specifications. The proposed research introduces a new design for an arithmetic circuit which process signed-digit number by adopting conversion the input rules into an array of a strand of DNA according to a specified output for each case. In other words, gates are designed using DNA strand while the inputs are designed depending on molecular beacons (MBs). The MB is a single strand of DNA that is basically in a stable state which consists of two regions, the loop, and stem. The MB consists of 25 nucleotides, where the stem region consists of 10 nucleotides, five on each side and each side is complementary to another side. This work is divided into two parts, each part represents the code for one of the inputs. Also, each code of the sign numbers (-1, 0,1) and its complement has its own predesign pattern. Three of these pattern numbers represent inputs, while the other complement three patterns represent gates. To design the gates we start from the top and when finishing the specific value we return from the bottom and vice versa to avoid the similar design and also to make the gates take the least number of DNA strands. The outputs of each signed digit (-1, 0, 1) are indicated by optical color lights red, no light and green, respectively. The simulated results for two 4-bit signed digit number for three steps addition operation show the correctness of proposed design. The addition process is executed in parallel, so the length of the number does not exceed the calculation time.
机译:最近,大多数研究人员的兴趣是找到设计具有特定规格的生物材料的方法。拟议的研究为算术电路引入了一种新设计,该算术电路通过根据每种情况的指定输出将输入规则转换为DNA链阵列来处理带符号数字。换句话说,门是使用DNA链设计的,而输入是根据分子信标(MBs)设计的。 MB是单链DNA,基本上处于稳定状态,由两个区域(环和茎)组成。 MB由25个核苷酸组成,其中茎区由10个核苷酸组成,每侧5个,每侧与另一侧互补。这项工作分为两部分,每一部分代表其中一个输入的代码。同样,符号编号的每个代码(-1,0,1)及其补码都有其自己的预先设计模式。这些模式编号中的三个表示输入,而其他补码三个模式表示门。为了设计门,我们从顶部开始,当完成特定值时,我们从底部返回,反之亦然,以避免类似的设计,并且使门采用最少数量的DNA链。每个有符号数字(-1、0、1)的输出分别由红色,红色和绿色的光学彩色灯指示。三步加法运算的两个4位带符号数字的仿真结果表明了所提出设计的正确性。加法过程是并行执行的,因此数字的长度不超过计算时间。

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