⚡ 本页包含 AI 生成的分析内容,仅供参考
该论文提出了一种用于无线体域网的0.24nJ/b可伸缩双FSK调制收发器。利用人体作为通信通道的体信道通信(BCC)方案,实现了低路径损耗和高能效。解决了先前体信道收发器未优化的问题。
health care and consumer electronic applications around the human body. There are 3 PHY schemes discussed in the IEEE 802.15.6 Task Group for WBAN standardization [1]: ultra-wide-band (UWB) PHY, narrow-band (NB) PHY, and body channel communication (BCC) PHY. The BCC, which uses the human body as a communication channel based on the near-field coupling mechanism, has advantages over UWB and NB in energy efficiency because it provides low pathloss without the body shadowing effect in low-frequency bands below 150MHz [2-4]. However, the previous body channel transceivers (BCTs) were not optimized for WBAN because only phenomenological circuit models were used for the body channel analysis [5] and were unable to satisfy requirements such as energy efficiency, scalability of QoS, interference mitigation, and coexistence at
Joonsung Bae, Kiseok Song, Hyungwoo Lee, Hyunwoo Cho,
Long Yan, Hoi-Jun Yoo KAIST, Daejeon, Korea Wireless Body Area Network (WBAN) is an emerging technology that combines