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首页> 外文期刊>IEEE sensors journal >On the Physical Design of Molecular Communication Receiver Based on Nanoscale Biosensors
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On the Physical Design of Molecular Communication Receiver Based on Nanoscale Biosensors

机译:基于纳米生物传感器的分子通信接收机的物理设计

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摘要

Molecular communications, where molecules are used to encode, transmit, and receive information, are a promising means of enabling the coordination of nanoscale devices. The paradigm has been extensively studied from various aspects, including channel modeling and noise analysis. Comparatively little attention has been given to the physical design of molecular receiver and transmitter, envisioning biological synthetic cells with intrinsic molecular reception and transmission capabilities as the future nanomachines. However, this assumption leads to a discrepancy between the envisaged applications requiring complex communication interfaces and protocols, and the very limited computational capacities of the envisioned biological nanomachines. In this paper, we examine the feasibility of designing a molecular receiver, in a physical domain other than synthetic biology, meeting the basic requirements of nanonetwork applications. We first review the state-of-the-art biosensing approaches to determine whether they can inspire a receiver design. We reveal that the nanoscale field effect transistor-based electrical biosensor technology (bioFET) is particularly a useful starting point for designing a molecular receiver. Focusing on bioFET-based molecular receivers with a conceptual approach, we provide a guideline elaborating on their operation principles, performance metrics, and design parameters. We then provide a simple model for signal flow in silicon nanowire FET-based molecular receiver. Finally, we discuss the practical challenges of implementing the receiver and present the future research avenues from a communication theoretical perspective.
机译:使用分子编码,传输和接收信息的分子通信是实现纳米级设备协调的一种有前途的手段。已从各个方面对模型进行了广泛研究,包括通道建模和噪声分析。相对较少的注意力集中在分子接收器和发射器的物理设计上,他们设想将具有固有分子接收和传输功能的生物合成细胞作为未来的纳米机器。但是,这种假设导致需要复杂的通信接口和协议的预期应用程序与预期的生物纳米机器的非常有限的计算能力之间存在差异。在本文中,我们研究了在除合成生物学以外的物理领域中设计分子接收器的可行性,以满足纳米网络应用的基本要求。我们首先回顾最先进的生物传感方法,以确定它们是否可以激发接收机设计。我们揭示了基于纳米场效应晶体管的电生物传感器技术(bioFET)特别是设计分子接收器的有用起点。通过概念性方法,重点关注基于bioFET的分子接收器,我们提供了详细说明其工作原理,性能指标和设计参数的指南。然后,我们为基于硅纳米线FET的分子接收器中的信号流提供了一个简单模型。最后,我们讨论了实现接收器的实际挑战,并从传播理论的角度介绍了未来的研究途径。

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