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An IoT Wi-Fi Connected Sensor For Real Time Heart Rate Variability Monitoring

机译:用于实时心率可变性监测的物联网无线连接传感器

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Heart rate variability (HRV) measurement is very much essential to determine the heart’s health and it’s functioning. The real-time HRV measurement helps physicians to assess the physiological state of a person or a patient. Several personal HRV monitoring devices have been developed and put to use in different ways. However, less has been explored, when it comes to leveraging the benefits of internet-of-things (IoT) and cloud technology for real-time HRV monitoring using wireless sensor networks. This work describes an implementation of an IoT cloud-based HRV monitoring application using a low-power embedded microcontroller interfaced to a Wi-Fi embedded network processor. An ECG analog frontend AD8232 was wired to a low-power microcontroller MSP430, and the micro-controller was interfaced to CC3100 Wi-Fi booster pack through a serial peripheral interface (SPI) for acquiring the wireless transmission capability. The microcontroller was programmed to acquire the data from the analog frontend by enabling the timer interrupt control. The ECG peak detection algorithm was implemented on the microcontroller to derive heart rate and inter-beat-interval (IBI) values. The real-time heart rate values were streamed to PubNub IoT web interface using TCP/IP stack on Wi-Fi booster. The data from PubNub channel was visualized using freeboard.io dashboard. The experimental results confirm the suitability of implemented wireless sensor node for real-time HRV monitoring and to implement multi-parameter healthcare monitoring IoT applications.
机译:心率变异性(HRV)测量对于确定心脏的健康是至关重要的,这是必不可少的。实时HRV测量有助于医生评估人或患者的生理状态。已经开发了几种个人HRV监控设备并以不同的方式使用。但是,在利用互联网(物联网)和云技术的利用时,已经探讨了较少的事情,用于使用无线传感器网络进行实时HRV监控。这项工作描述了使用与Wi-Fi嵌入式网络处理器接口的低功耗嵌入式微控制器的基于IOT云的HRV监控应用程序的实现。将ECG模拟前端AD8232连接到低功耗微控制器MSP430,微控制器通过串行外设接口(SPI)接口到CC3100 Wi-Fi助推器包,以获取无线传输能力。编程微控制器以通过启用定时器中断控制来获取模拟前端的数据。在微控制器上实现了ECG峰值检测算法,以导出心率和禁止间隔(IBI)值。使用Wi-Fi助推器上的TCP / IP堆栈将实时心率值流入PubNub IoT Web界面。 PubNub通道的数据使用自由纸板可视化。实验结果证实了实现无线传感器节点进行实时HRV监控的适用性,并实现多参数医疗保健监控IOT应用。

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