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Sub-μWRComm: 415-nW 1–10-kb/s Physically and Mathematically Secure Electro-Quasi-Static HBC Node for Authentication and
首款超低功耗(415nW)人体通信安全节点,结合物理与数学加密技术。
415nW总功耗(最低功耗模式108nW),1kb/s数据速率,-64dBm灵敏度
超低功耗人体通信物理安全AES-256加密可穿戴设备
▸首次实现>1kb/s的超低功耗可穿戴通信(Sub-µWRComm)
▸结合电准静态人体通信(EQS-HBC)的物理安全性与AES-256数学加密
▸通过FEM仿真和泄漏测量验证信号封闭特性
Abstract
Low-power secure communication is one of the key enablers of applications, such as secure authentication and remote health monitoring. Radio wave-based communication method, such as Bluetooth, suffers from high-power requirements and physical signal leakage. Electro-quasi-static human body com- munication (EQS-HBC) utilizes the conductivity of the human body to use it as a communication medium and confine the signal within a close proximity of the body and enable low power consumption through low-frequency operation. This makes EQS-HBC an attractive alternative for such low-power, low-data- rate secure communication. In this article, we present the first >1 kb/s Sub- µ WW eaR able Comm unication (Sub-µWRComm), a secure EQS-HBC node, which uses EQS-HBC for physical secu- rity and an AES-256 engine for mathematical security and oper- ate at sub-µW power budget. The signal confinement property of EQS-HBC is demonstrated through finite element method (FEM) simulations and leakage measurements, establishing its security property. The Sub- µWRComm system consumes only 415-nW total power, with 108-nW active power at the lowest power mode, operating at a data rate of 1 kb/s with −64-dBm sensitivity mak- ing it suitable for authentication and remote monitoring appli- cations. This work presents a 100 × improvement compared with state-of-the-art HBC implementa tions while providing simulta- neous physical and mathematical security for the first time.