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A Novel Synthesizing Genetic Logic Circuit: Frequency Multiplier

机译:一种新型的合成遗传逻辑电路:倍频器

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This paper presents a novel synthesizing genetic logic circuit design based on an existing synthetic genetic oscillator, which provides a function of frequency multiplier to synthesize a clock signal whose frequency is a multiple of that of the genetic oscillator. In the renowned literature, the synthetic genetic oscillator, known as a repressilator, has been successfully built in Escherichia coli to generate a periodic oscillating phenomenon through three repressive genes repress each other in a chain. On the basis of this fact, our proposed genetic frequency multiplier circuit utilizes genetic Buffers in series with a waveform-shaping circuit to reshape the genetic oscillation signal into a crisp logic clock signal. By regulating different threshold levels in the Buffer, the time length of logic high/low levels in a fundamental sinusoidal wave can be engineered to pulse-width-modulated (PWM) signals with various duty cycles. Integrating some of genetic logic XOR gates and PWM signals from the output of the Buffers, a genetic frequency multiplier circuit can be created and the clock signal with the integer-fold of frequency of the genetic oscillator is generated. The synthesized signal can be used in triggering the downstream digital genetic logic circuits. Simulation results show the applicability of the proposed idea.
机译:本文提出了一种基于现有合成遗传振荡器的新颖的合成遗传逻辑电路设计,该电路提供了倍频功能以合成时钟信号,该时钟信号的频率是遗传振荡器的倍数。在著名的文献中,合成的基因振荡器被称为“阻遏物”,已成功地构建在大肠杆菌中,通过三个阻抑基因在一条链中相互抑制,从而产生周期性的振荡现象。基于这一事实,我们提出的遗传倍频器电路利用与波形整形电路串联的遗传缓冲器将遗传振荡信号整形为清晰的逻辑时钟信号。通过调节缓冲器中的不同阈值电平,可以将正弦波中逻辑高/低电平的时间长度设计为具有各种占空比的脉宽调制(PWM)信号。集成一些遗传逻辑XOR门和来自缓冲器输出的PWM信号,可以创建遗传倍频电路,并生成具有遗传振荡器频率整数倍的时钟信号。合成信号可用于触发下游数字遗传逻辑电路。仿真结果表明了该思想的适用性。

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