An Energy-Efficient Carrier Synchronization Method for Galvanic Coupling Intra-Body Communication

Farzana Kulsoom;Hassan Nazeer Chaudhry;Pietro Savazzi;Fabio Dell’Acqua;Anna Vizziello
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Abstract

Intra-body communication will facilitate next-generation personalized medicine by enabling interconnection among implanted devices. To this purpose, energy-efficient communication technologies are required such as galvanic coupling (GC). Although some GC testbeds have been developed to implement the entire communication chain, synchronization problems have not yet been tackled exhaustively. While some papers simply assume a-priori perfect synchronization between GC transmitter and receiver, other studies developed solutions that often are time-consuming. In this paper, an energy-efficient and fast maximum-log-likelihood (ML) synchronization method is proposed, that can operate in real time and follow channel variations. Experiments reveal that the proposed ML synchronization scheme is very effective for short-range GC communication up to 4 cm, with performance similar to the current State-of-the-Art. It shows slightly lower performance levels for higher distances, still it offers the benefit of lower computational requirements than the reference method.
用于电晕耦合体外通信的节能载波同步方法
通过实现植入设备之间的互联,体内通信将促进下一代个性化医疗的发展。为此,需要高能效的通信技术,例如电耦合(GC)。虽然已经开发了一些 GC 测试平台来实现整个通信链,但同步问题尚未得到彻底解决。一些论文只是简单地假设 GC 发射器和接收器之间先验地实现了完美同步,而其他研究则开发出了往往耗时的解决方案。本文提出了一种高能效、快速的最大对数似然(ML)同步方法,该方法可实时运行,并能跟踪信道变化。实验表明,所提出的 ML 同步方案对于 4 厘米以内的短距离 GC 通信非常有效,其性能与当前的最新技术水平相似。在更远的距离上,它的性能水平略低,但与参考方法相比,它仍具有计算要求低的优点。
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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