Evaluating the quality of service of the Internet of Bio-Nano Things in possible scenarios of applicability in the nanomedicine

H. Nieto-Chaupis
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引用次数: 8

Abstract

Once the Internet of Bio-Nano Things (IoBNT) is already running, one important aspect that must be established is the estimation of parameters of the quality of service (QoS). From the view of the end-user, QoS should be high enough in order to guarantee an excellent applicability of the IoBNT, in particular when humans are part of the network and where efficient techniques of nanomedicine are foresen. In this paper, we present a scheme where the QoS is calculated when the IoBNT is applied for sensing abnormalities in kidney. For this end the following key points are considered: (i) sensing of charged proteins through THz waves, (ii) reception by bio-cyber device and subsequent emission of MHz waves, (iii) reception by smartphone, (iv) reception and storing of information at the cloud, (v) exchanging information with server and world-wide-web, and (vi) final reception and treatment of data by the enduser. The estimation of the full QoS has paid attention to the atomic absorption of THz waves by water in human tissue, fact which might degrade the optimal surveillance of the sensing of proteins and which is translated as the main source of errors. The full nonlinear expression is numerically evaluated by obtaining in average a QoS of order of 90±8%.
评价生物纳米物联网在纳米医学可能应用场景下的服务质量
生物纳米物联网(IoBNT)一旦开始运行,必须建立的一个重要方面是服务质量(QoS)参数的估计。从最终用户的角度来看,QoS应该足够高,以保证IoBNT的出色适用性,特别是当人类是网络的一部分时,以及纳米医学的高效技术被预见时。在本文中,我们提出了一种方案,当IoBNT应用于肾脏异常检测时,计算QoS。为此,考虑了以下关键点:(i)通过太赫兹波感应带电荷的蛋白质,(ii)生物网络设备的接收和随后的MHz波发射,(iii)智能手机的接收,(iv)在云端接收和存储信息,(v)与服务器和万维网交换信息,以及(vi)最终用户接收和处理数据。全QoS的估计关注了人体组织中水对太赫兹波的原子吸收,这一事实可能会降低对蛋白质传感的最佳监测,并被转化为误差的主要来源。通过平均获得90±8%的QoS,对完整的非线性表达式进行了数值计算。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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