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A Low-Power Heart Rate Sensor with Adaptive Heartbeat Locked Loop

机译:低功率心率传感器,具有自适应心跳锁定环

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Photoplethysmography (PPG) is one of the widely used noninvasive heart rate (HR) monitoring techniques in wearable devices. Lighting of the LED dominates the power consumption of a PPG sensor. Lowering the LED lighting duration is an effectively approach to save power. This paper proposes an adaptive heartbeat locked loop (AHBLL) technique, which can dynamically adjust the dividing ratio N according to the heart rate derivative (HRD). In this way, the LED pulse duty cycle can be significantly reduced to save power. To improve the robustness of the AHBLL system, the relationship between HRD and the dividing ratio N is theoretically analyzed, which provides an optimal design guideline. To verify the proposed technique, an HR sensing circuit including an HRD detector is designed and simulated. The results show that the LED power consumption is reduced by 2.2 ~ 3.3× compared with the state-of-the-art heartbeat locked loop (HBLL) technique.
机译:PhotoPlySmography(PPG)是可穿戴设备中广泛使用的非侵入性心率(HR)监测技术之一。 LED的照明主导了PPG传感器的功耗。 降低LED照明持续时间是节省电力的有效方法。 本文提出了一种自适应心跳锁定环(AHBL1)技术,其可以根据心率衍生物(HRD)动态调节分频比n。 以这种方式,可以显着减少LED脉冲占空比以节省电力。 为了改善AHBLL系统的稳健性,理论上分析了HRD与分界比N之间的关系,提供了最佳的设计指南。 为了验证所提出的技术,设计并模拟包括HRD检测器的HR感测电路。 结果表明,与最先进的心跳锁定环(HBLL)技术相比,LED功耗降低了2.2〜3.3倍。

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