A Low-Power Dual-Factor Authentication Unit for Secure Implantable Devices

Saurav Maji, Utsav Banerjee, Samuel H. Fuller, Mohamed R. Abdelhamid, P. Nadeau, R. Yazicigil, A. Chandrakasan
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引用次数: 15

Abstract

This paper presents a dual-factor authentication protocol and its low-power implementation for security of implantable medical devices (IMDs). The protocol incorporates traditional cryptographic first-factor authentication using Datagram Transport Layer Security - Pre-Shared Key (DTLS-PSK) followed by the user's touch-based voluntary second-factor authentication for enhanced security. With a low-power compact always-on wake-up timer and touch-based wake-up circuitry, our test chip consumes only 735 pW idle state power at 20.15 Hz and 2.5 V. The hardware accelerated dual-factor authentication unit consumes 8 µW at 660 kHz and 0.87 V. Our test chip was coupled with commercial Bluetooth Low Energy (BLE) transceiver, DC-DC converter, touch sensor and coin cell battery to demonstrate standalone implantable operation and also tested using in-vitro measurement setup.
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一种用于安全植入式设备的低功耗双因素认证单元
提出了一种用于植入式医疗设备安全的双因素认证协议及其低功耗实现。该协议结合了使用数据报传输层安全-预共享密钥(DTLS-PSK)的传统加密第一因素认证,然后是用户基于触摸的自愿第二因素认证,以增强安全性。我们的测试芯片采用低功耗紧凑型常亮唤醒定时器和基于触摸的唤醒电路,在20.15 Hz和2.5 V下仅消耗735 pW的空闲状态功率。硬件加速双因素认证单元在660khz和0.87 V下功耗为8µW。我们的测试芯片与商用蓝牙低功耗(BLE)收发器、DC-DC转换器、触摸传感器和纽扣电池相结合,以演示独立植入式操作,并使用体外测量装置进行测试。
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