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柔性可穿戴心率监测系统与低功耗设计:综述

Flexible Wearable Heart Rate Monitoring System and Low-Power Design: A Review.

作者信息

Zheng Ciyan, Yong Chengming, Wei Qi, Qiao Fei

机构信息

School of Automation, Guangdong Polytechnic Normal University, Guangzhou 510640, China.

Department of Precision Instruments, Tsinghua University, Beijing 100190, China.

出版信息

Sensors (Basel). 2025 Aug 8;25(16):4913. doi: 10.3390/s25164913.

Abstract

In an increasingly interconnected world, flexible wearable systems have emerged as transformative technologies, revolutionizing the monitoring and management of personal health and daily activities. With the surging demand for health monitoring, these systems have demonstrated remarkable potential in heart rate monitoring and the detection of heart rate irregularities. This paper provides a comprehensive review of the design of flexible wearable heart rate monitoring systems, with a particular focus on their low-power design. The low-power design is reviewed from four constituent modules of the system, namely the heart rate signal acquisition module, preprocessing module, computation module, and transmission/output module. Meanwhile, for each module, low-power design strategies are reviewed from three different dimensions: hardware-level optimization, algorithm-level enhancement, and hardware-algorithm co-design approaches. Through this multi-dimensional review, the importance of low-power design in flexible wearable heart rate monitoring systems is emphasized. In addition, this paper offers a perspective on the future of low-power design for flexible wearable heart rate monitoring systems. With the advancements in materials science and flexible electronics technology, it is believed that there will surely be better design methods and strategies for the low-power design of flexible wearable systems.

摘要

在一个日益相互关联的世界中,柔性可穿戴系统已成为变革性技术,彻底改变了个人健康和日常活动的监测与管理方式。随着对健康监测需求的激增,这些系统在心率监测和心率异常检测方面展现出了巨大潜力。本文全面综述了柔性可穿戴心率监测系统的设计,特别关注其低功耗设计。从系统的四个组成模块,即心率信号采集模块、预处理模块、计算模块和传输/输出模块对低功耗设计进行了综述。同时,针对每个模块,从硬件级优化、算法级增强和硬件 - 算法协同设计方法这三个不同维度对低功耗设计策略进行了综述。通过这种多维度综述,强调了低功耗设计在柔性可穿戴心率监测系统中的重要性。此外,本文还对柔性可穿戴心率监测系统低功耗设计的未来发展提供了展望。随着材料科学和柔性电子技术的进步,相信未来一定会有更好的柔性可穿戴系统低功耗设计方法和策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/691c/12389696/c82b84dcdaef/sensors-25-04913-g001.jpg

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