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基于扩散的可靠分子通信的低复杂度信道编码。

Low-Complexity Channel Codes for Reliable Molecular Communication via Diffusion.

机构信息

Telecommunications and Computer Engineering, Instituto Universitário de Lisboa (ISCTE-IUL), 1649-026 Lisboa, Portugal.

Instituto de Telecomunicacoes, 1049-001 Lisboa, Portugal.

出版信息

Sensors (Basel). 2021 Dec 22;22(1):41. doi: 10.3390/s22010041.

Abstract

It is envisioned that healthcare systems of the future will be revolutionized with the development and integration of body-centric networks into future generations of communication systems, giving rise to the so-called "Internet of Bio-nano things". Molecular communications (MC) emerge as the most promising way of transmitting information for in-body communications. One of the biggest challenges is how to minimize the effects of environmental noise and reduce the inter-symbol interference (ISI) which in an MC via diffusion scenario can be very high. To address this problem, channel coding is one of the most promising techniques. In this paper, we study the effects of different channel codes integrated into MC systems. We provide a study of Tomlinson, Cercas, Hughes (TCH) codes as a new attractive approach for the MC environment due to the codeword properties which enable simplified detection. Simulation results show that TCH codes are more effective for these scenarios when compared to other existing alternatives, without introducing too much complexity or processing power into the system. Furthermore, an experimental proof-of-concept macroscale test bed is described, which uses pH as the information carrier, and which demonstrates that the proposed TCH codes can improve the reliability in this type of communication channel.

摘要

未来的医疗保健系统有望通过将以人体为中心的网络开发和集成到下一代通信系统中而发生革命性变化,从而产生所谓的“生物纳米物联网”。分子通信 (MC) 成为在体内通信中传输信息的最有前途的方式。最大的挑战之一是如何最小化环境噪声的影响并减少符号间干扰 (ISI),在通过扩散场景的 MC 中,ISI 可能非常高。为了解决这个问题,信道编码是最有前途的技术之一。在本文中,我们研究了集成到 MC 系统中的不同信道编码的影响。我们研究了 Tomlinson、Cercas、Hughes (TCH) 码作为 MC 环境的一种新的有吸引力的方法,因为码字特性使简化检测成为可能。仿真结果表明,与其他现有替代方案相比,TCH 码在这些场景中更有效,而不会给系统带来太多的复杂性或处理能力。此外,还描述了一个使用 pH 作为信息载体的宏观实验验证测试平台,该平台证明了所提出的 TCH 码可以提高这种通信信道的可靠性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/28d7/8747142/6ad7096095a9/sensors-22-00041-g001.jpg

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