A biological circuit design for modulated parity-check encoding in molecular communication

A biological circuit design for modulated parity-check encoding in molecular communication
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分子通信中调制奇偶校验编码的生物电路设计

DOI:
10.1109/icc.2017.7997032
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发表时间:
2017
期刊:
2017 IEEE International Conference on Communications (ICC)
影响因子:
--
通讯作者:
M. Magarini
M. Magarini
中科院分区:
--
文献类型:
--
作者:
Alessio Marcone;M. Pierobon;M. Magarini

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相似文献

分子通信(MC)被视为物联网在生物和纳米尺度领域的未来使能技术之一,有望在医疗保健、环境保护和生物修复等领域实现应用。由于MC直接受到生物细胞中的通信过程的启发,因此通过细胞遗传密码操纵生物电路的工程,可以获得细胞的信息处理能力,是未来实现MC组件的候选技术。本文在前人对MC和细胞通信生物电路信道编码方案研究的启发下,提出了一种通过信号分子传输细胞信息的联合编码器和调制器设计。特别是,信息编码和调制基于二进制奇偶校验方案,并通过基于基因表达和质量作用反应的生物电路元件互连来实现。每个组件都根据所需的输出进行数学建模和调优。然后给出了生物电路在仿真环境中的实现以及相应的数值结果,通过显示与理想编码和调制器方案的一致性,验证了所提出的设计。
Regarded as one of the future enabling technologies of the Internet of Things at the biological and nanoscale domains, Molecular Communication (MC) promises to enable applications in healthcare, environmental protection, and bioremediation, amongst others. Since MC is directly inspired by communication processes in biological cells, the engineering of biological circuits through cells' genetic code manipulation, which enables access to the cells' information processing abilities, is a candidate technology for the future realization of MC components. In this paper, inspired by previous research on channel coding schemes for MC and biological circuits for cell communications, a joint encoder and modulator design is proposed for the transmission of cellular information through signaling molecules. In particular, the information encoding and modulation are based on a binary parity check scheme, and they are implemented by interconnecting biological circuit components based on gene expression and mass action reactions. Each component is mathematically modeled and tuned according to the desired output. The implementation of the biological circuit in a simulation environment is then presented along with the corresponding numerical results, which validate the proposed design by showing agreement with an ideal encoding and modulator scheme.
DOI: 10.1007/10_2013_249
发表时间: 2014
期刊: Advances in biochemical engineering/biotechnology
影响因子: --
作者:
Stephen Payne;L. You
通讯作者: Stephen Payne;L. You