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Modeling and Analysis of SiNW BioFET as molecular antenna for Bio-cyber interfaces towards the Internet of Bio-NanoThings

机译:Sinw Biofet作为生物纳米互联网生物网络界面的分子天线的建模与分析

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Seamless connection of molecular nanonetworks to macroscale cyber networks is envisioned to enable the Internet of Bio-NanoThings, which promises for cutting-edge applications, especially in the medical domain. The connection requires the development of an interface between the biochemical domain of molecular nanonetworks and the electrical domain of conventional electromagnetic networks. To this aim, in this paper, we propose to exploit field effect transistor based biosensors (bioFETs) to devise a molecular antenna capable of transducing molecular messages into electrical signals. In particular, focusing on the use of SiNW FET-based biosensors as molecular antennas, we develop deterministic and noise models for the antenna operation to provide a theoretical framework for the optimization of the device from communication perspective. We numerically evaluate the performance of the antenna in terms of the Signal-to-Noise Ratio (SNR) at the electrical output.
机译:设想了分子纳米纳米空间的无缝连接,以实现生物纳米纳米的互联网,这有助于尖端应用,尤其是在医学领域。该连接需要开发分子纳米纳米机组的生物化结构域与传统电磁网络的电域之间的界面。为此目的,在本文中,我们建议利用基于场效应晶体管的生物传感器(Biofet)来设计能够将分子信息转换成电信号的分子天线。特别地,专注于使用基于FET的生物传感器作为分子天线,我们为天线操作开发确定性和噪声模型,以提供从通信视角来优化设备的理论框架。我们在电气输出处的信噪比(SNR)方面数值评估天线的性能。

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