A Novel Experimental Platform for Thermomolecular Communications

IF 2.3 Q2 ENGINEERING, ELECTRICAL & ELECTRONIC
Michael Gattringer;Stefan Angerbauer;Andreas Springer;Werner Haselmayr
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引用次数: 0

Abstract

In this work, we present a novel thermomolecular communications gateway allowing communication through the human skin into the human body connecting the Internet of things (IoT) with the Internet of bio-nano things (IoBNT). We develop an experimental setup as a proof of concept and provide a detailed description of the testbed, its assembly and fabrication. Mathematical models for all components are derived and verified experimentally. Finally, we analyze the communications performance of the system and elaborate on future works.
一种新型的热分子通信实验平台
在这项工作中,我们提出了一种新的热分子通信网关,允许通过人体皮肤进入人体,将物联网(IoT)与生物纳米物联网(IoBNT)连接起来。我们开发了一个实验装置作为概念验证,并提供了测试平台,其组装和制造的详细描述。推导了各部件的数学模型,并进行了实验验证。最后,对系统的通信性能进行了分析,并对今后的工作进行了阐述。
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来源期刊
CiteScore
3.90
自引率
13.60%
发文量
23
期刊介绍: As a result of recent advances in MEMS/NEMS and systems biology, as well as the emergence of synthetic bacteria and lab/process-on-a-chip techniques, it is now possible to design chemical “circuits”, custom organisms, micro/nanoscale swarms of devices, and a host of other new systems. This success opens up a new frontier for interdisciplinary communications techniques using chemistry, biology, and other principles that have not been considered in the communications literature. The IEEE Transactions on Molecular, Biological, and Multi-Scale Communications (T-MBMSC) is devoted to the principles, design, and analysis of communication systems that use physics beyond classical electromagnetism. This includes molecular, quantum, and other physical, chemical and biological techniques; as well as new communication techniques at small scales or across multiple scales (e.g., nano to micro to macro; note that strictly nanoscale systems, 1-100 nm, are outside the scope of this journal). Original research articles on one or more of the following topics are within scope: mathematical modeling, information/communication and network theoretic analysis, standardization and industrial applications, and analytical or experimental studies on communication processes or networks in biology. Contributions on related topics may also be considered for publication. Contributions from researchers outside the IEEE’s typical audience are encouraged.
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