Purdue University, School of Electrical and Computer Engineering, West Lafayette, IN, 47907, USA.
Sci Rep. 2019 Mar 11;9(1):4160. doi: 10.1038/s41598-018-38303-x.
Radiative communication using electro-magnetic (EM) fields amongst the wearable and implantable devices act as the backbone for information exchange around a human body, thereby enabling prime applications in the fields of connected healthcare, electroceuticals, neuroscience, augmented and virtual reality. However, owing to such radiative nature of the traditional wireless communication, EM signals propagate in all directions, inadvertently allowing an eavesdropper to intercept the information. In this context, the human body, primarily due to its high water content, has emerged as a medium for low-loss transmission, termed human body communication (HBC), enabling energy-efficient means for wearable communication. However, conventional HBC implementations suffer from significant radiation which also compromises security. In this article, we present Electro-Quasistatic Human Body Communication (EQS-HBC), a method for localizing signals within the body using low-frequency carrier-less (broadband) transmission, thereby making it extremely difficult for a nearby eavesdropper to intercept critical private data, thus producing a covert communication channel, i.e. the human body. This work, for the first time, demonstrates and analyzes the improvement in private space enabled by EQS-HBC. Detailed experiments, supported by theoretical modeling and analysis, reveal that the quasi-static (QS) leakage due to the on-body EQS-HBC transmitter-human body interface is detectable up to <0.15 m, whereas the human body alone leaks only up to ~0.01 m, compared to >5 m detection range for on-body EM wireless communication, highlighting the underlying advantage of EQS-HBC to enable covert communication.
利用可穿戴和植入设备中的电磁 (EM) 场进行辐射通信,是人体周围信息交换的基础,从而为互联保健、电疗、神经科学、增强和虚拟现实等领域的主要应用提供了支持。然而,由于传统无线通信的这种辐射性质,EM 信号会向各个方向传播,无意中允许窃听者截获信息。在这种情况下,人体主要由于其高含水量,已成为低损耗传输的媒介,称为人体通信 (HBC),为可穿戴通信提供了节能手段。然而,传统的 HBC 实现方式存在严重的辐射问题,这也会影响安全性。在本文中,我们提出了电准静态人体通信 (EQS-HBC),这是一种使用低频无载波 (宽带) 传输在体内定位信号的方法,从而使附近的窃听者极难截获关键的私人数据,从而产生一个隐蔽的通信通道,即人体。这项工作首次展示和分析了 EQS-HBC 实现的私人空间的改善。详细的实验,辅以理论建模和分析,表明由于 EQS-HBC 发射机-人体接口的准静态 (QS) 泄漏,在<0.15m 的范围内是可检测到的,而人体本身仅泄漏到~0.01m,相比之下,人体周围的 EM 无线通信的检测范围超过 5m,这突出了 EQS-HBC 实现隐蔽通信的潜在优势。