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体腔通道通信在可穿戴柔性电子产品中的作用和挑战。

The Role and Challenges of Body Channel Communication in Wearable Flexible Electronics.

出版信息

IEEE Trans Biomed Circuits Syst. 2020 Apr;14(2):283-296. doi: 10.1109/TBCAS.2020.2966285. Epub 2020 Jan 13.

Abstract

Flexible electronics are compatible with film substrates that are soft and stretchable, resulting in conformal integration with human body. Integrated with various sensors and communication ICs, wearable flexible electronics are able to effectively track human vital signs without affecting the body activities. Such a wearable flexible system contains a sensor, a front-end amplifier (FEA), an analog-to-digital converter (ADC), a micro-controller unit (MCU), a radio, a power management unit (PMU), where the radio is the design bottleneck due to its high power consumption. Different from conventional wireless communications, body channel communication (BCC) uses the human body surface as the signal transmission medium resulting in less signal loss and low power consumption. However, there are some design challenges in BCC, including body channel model, backward loss, variable contact impedance, stringent spectral mask, crystalless design, body antenna effect, etc. In this paper, we conduct a survey on BCC transceiver, and analyze its potential role and challenges in wearable flexible electronics.

摘要

可挠式电子产品可与柔软、可拉伸的薄膜基底兼容,从而与人体实现贴合式整合。结合各种传感器和通信集成电路,可穿戴式可挠电子产品能够在不影响人体活动的情况下,有效追踪人体生命体征。这种可穿戴式系统包含传感器、前端放大器(FEA)、模数转换器(ADC)、微控制器单元(MCU)、无线电、电源管理单元(PMU),其中由于功耗较高,无线电成为设计瓶颈。与传统的无线通信不同,体域网通信(BCC)使用人体表面作为信号传输介质,从而导致信号损耗较小、功耗较低。然而,BCC 存在一些设计挑战,包括体域网信道模型、反向损耗、可变接触阻抗、严格的频谱掩模、无晶体设计、体天线效应等。在本文中,我们对 BCC 收发器进行了调查,并分析了其在可穿戴式可挠电子产品中的潜在作用和挑战。

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