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一种纳米网络设备的概念设计。

Conceptual Design of a Nano-Networking Device.

作者信息

Canovas-Carrasco Sebastian, Garcia-Sanchez Antonio-Javier, Garcia-Sanchez Felipe, Garcia-Haro Joan

机构信息

Department of Information and Communication Technologies, Universidad Politécnica de Cartagena (UPCT), Campus Muralla del Mar, E-30202 Cartagena, Spain.

出版信息

Sensors (Basel). 2016 Dec 11;16(12):2104. doi: 10.3390/s16122104.

Abstract

Nanotechnology is an emerging scientific area whose advances, among many others, have a positive direct impact on the miniaturization of electronics. This unique technology enables the possibility to design and build electronic components as well as complete devices (called nanomachines or nanodevices) at the nano scale. A nanodevice is expected to be an essential element able to operate in a nanonetwork, where a huge number of them would coordinate to acquire data, process the information gathered, and wirelessly transmit those data to end-points providing innovative services in many key scenarios, such as the human body or the environment. This paper is aimed at studying the feasibility of this type of device by carefully examining their main component parts, namely the nanoprocessor, nanomemory, nanoantenna, and nanogenerator. To this end, a thorough state-of-the-art review is conveyed to discuss, substantiate, and select the most suitable current technology (commercial or pre-commercial) for each component. Then, we further contribute by developing a complete conceptual nanodevice layout taking into consideration its ultra-small size (similar to a blood cell) and its very restricted capabilities (e.g., processing, memory storage, telecommunication, and energy management). The required resources as well as the power consumption are realistically estimated.

摘要

纳米技术是一个新兴的科学领域,其进展在诸多方面对电子设备的小型化产生了积极的直接影响。这项独特的技术使得在纳米尺度设计和制造电子元件以及完整设备(称为纳米机器或纳米器件)成为可能。纳米器件有望成为能够在纳米网络中运行的关键元件,在纳米网络中,大量的纳米器件将协同工作以获取数据、处理收集到的信息,并将这些数据无线传输到端点,从而在许多关键场景(如人体或环境)中提供创新服务。本文旨在通过仔细研究这类设备的主要组成部分,即纳米处理器、纳米存储器、纳米天线和纳米发电机,来探讨这类设备的可行性。为此,进行了全面的最新技术综述,以讨论、证实并为每个组件选择最合适的当前技术(商业或准商业技术)。然后,我们进一步通过开发一个完整的概念性纳米器件布局做出贡献,该布局考虑到其超小尺寸(类似于血细胞)及其非常有限的能力(例如,处理、存储、电信和能量管理)。对所需资源以及功耗进行了实际估算。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9788/5191084/ef7a7941f041/sensors-16-02104-g001.jpg

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