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昆明冶金高等专科学校学报 ›› 2025, Vol. 41 ›› Issue (3): 70-.

• 机械设计制造与自动化技术 • 上一篇    下一篇

居家用无放大低功耗心电采集监护系统的设计与实现

  

  1. 1.曲靖市第二人民医院医学装备管理部,云南 曲靖 655000;2.昆明冶金高等专科学校电气与机械学院,云南 昆明 650033
  • 收稿日期:2024-06-11 出版日期:2025-06-07 发布日期:2026-04-03
  • 作者简介:阳广照(1986年-),男,云南宣威人,工程师,工学硕士,主要从事医学信号处理与医疗设备研究。
  • 基金资助:
    云南省教育厅科学研究基金常态化疫情防控下融合通识类课程成绩的高职大学生心理健康异常检测模型研究(2023J1550)。

Design and Implementation of a Low Power ECG Acquisition and Monitoring System Without Amplification for Home Use

  1. 1.Medical Equipment Management Department,Qujing second peoples hospital,Qujing 655000,China;2.Faculty of Electrical Engineering,Kunming Metallurgy College,Kunming 650033,China
  • Received:2024-06-11 Online:2025-06-07 Published:2026-04-03

摘要: 深度老龄化时代,老龄群体的健康问题成为社会关注的热点和重点。在心脏疾病成为人类生命健康最大威胁之一的今天,研制一种低功耗的适于居家环境的动态心电信号采集监测系统,对于居家人群及时采集、跟踪心电信号及预防监护心脏疾病有着重要的意义。因此,本论文设计一种适于家用无放大低功耗动态心电监护系统,系统以STM32F1为微控制器,ADS1298芯片为心电信号专用采集芯片,Wi-Fi技术无线链接到互联网,实现实时采集的心电信号及时传输到云端服务器,云端服务器利用Labview实现信号的处理、显示、存储及分析等。实验结果表明,该系统功耗低、体积小,无线传输信号稳定,传输距离适合居家场景,可正常实现居家心电信号监测及分析。

关键词: 心电信号, 信号采集, 无线传输, LABVIEW, 波形检测, 心电分析

Abstract:

In the era of deep aging, and the health issues of the elderly population have become a hot topic and focus of social attention. In today's world where heart disease has become one of the biggest threats to human life and health. Developing a low-power dynamic electrocardiogram signal acquisition and monitoring system suitable for home environments is of great significance for timely collection and tracking of electrocardiogram signals and prevention and monitoring of heart disease for home populations. Therefore, this paper designs a low power consumption dynamic ECG monitoring system suitable for home use without amplification. The system uses STM32F1 as the microcontroller, ADS1298 chip as the dedicated ECG signal acquisition chip, Wi Fi technology is wirelessly linked to the Internet, so that real-time collected ECG signals can be transmitted to the cloud server in time. The cloud server uses Labview to achieve signal processing, display, storage and analysis. The experimental results show that the system has low power consumption, small size, stable wireless transmission signal, suitable transmission distance for home scenarios, and can achieve normal monitoring and analysis of home electrocardiogram signals.


Key words: ECG signal, signal acquisition, wireless transmission, labview, waveform detection, electrocardiogram analysis

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