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A microcontroller based system for real-time heart rate estimation from ECG signal

机译:基于微控制器的系统,可根据ECG信号实时估算心率

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This paper illustrates an algorithm for real time detection QRS complex from ECG signal for computation of heart rate. The algorithm is implemented on a standalone embedded system based on Atmel 89C51 microcontroller. Synthetic ECG is generated using Physionet data through the parallel port (LPT1) of a personal computer and delivered to the embedded system. During an initial training period of first 1500 samples, some amplitude and slope based signatures are learned to form a rule base, which are used for detecting the subsequent QRS regions accurately. An average sensitivity of 97.82% and predictivity of 98.35% respectively are obtained from MIT BIH arrhythmia data. From the detected successive R peak locations heart rate has been computed.
机译:本文阐述了一种从心电信号中实时检测QRS复杂度的算法,用于计算心率。该算法在基于Atmel 89C51微控制器的独立嵌入式系统上实现。使用Physionet数据通过个人计算机的并行端口(LPT1)生成合成ECG,并将其传送到嵌入式系统。在最初的1500个样本的初始训练期间,学习了一些基于幅度和斜率的签名以形成规则库,这些规则库用于精确检测后续QRS区域。从MIT BIH心律失常数据获得的平均灵敏度分别为97.82%和98.35%。根据检测到的连续R峰值位置,已计算出心率。

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