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首页> 外文期刊>Signal Processing, IET >Efficient FPGA-based VLSI architecture for detecting R-peaks in electrocardiogram signal by combining Shannon energy with Hilbert transform
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Efficient FPGA-based VLSI architecture for detecting R-peaks in electrocardiogram signal by combining Shannon energy with Hilbert transform

机译:通过将Shannon能量与Hilbert变换结合使用的基于FPGA的高效VLSI架构,可检测心电图信号中的R峰

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Electrocardiogram (ECG) is a critical application in light of R-peak detection. The R-peaks are impacted by some QRS complex and noises in the current method. Basic testability, snappier execution, and confirmation choices are accomplished by the utilization of the field programmable gate array (FPGA). But, FPGA execution gives less accuracy. To battle execution trouble, another R-peak detector is proposed and relying upon the propelled peak finding logic, which incorporates a Bandpass filter and first-order differentiation process, which are done in the primary phase of the strategy. The noises in the input ECG signal are decreased in the first stage. In the subsequent stage, the smooth Shannon energy envelope (SEE) is acquired by utilizing SEE extraction and the zero phases filtering process. The false R peak is stifled by proposing a Hilbert transform (HT) in the third stage. The HT requires more hardware space and high-power utilization in the current technique. Due to this reason, Real valued Fast Fourier Transform (RFFT) and Inverse RFFT (IRFFT) techniques are proposed in the HT. In the fourth stage, R-peak acknowledgment is evaluated using Massachusetts Institute of Technology, Beth Israel Hospital (MIT-BIH) arrhythmia database and produced the average accuracy of 99.86%, sensitivity of 99.95% and the positive predictivity of 99.90%.
机译:鉴于R峰检测,心电图(ECG)是至关重要的应用。在当前方法中,R峰受到一些QRS复数和噪声的影响。基本的可测试性,快速的执行和确认选择是通过使用现场可编程门阵列(FPGA)来完成的。但是,FPGA执行的准确性较低。为了解决执行上的麻烦,提出了另一个R-peak检测器,并依赖于推进的峰值发现逻辑,该逻辑结合了在策略的主要阶段完成的带通滤波器和一阶微分过程。输入心电图信号中的噪声在第一阶段降低。在随后的阶段,通过利用SEE提取和零相滤波过程来获取平滑的Shannon能量包络(SEE)。通过在第三阶段提出希尔伯特变换(HT)来抑制伪R峰。在当前技术中,HT需要更多的硬件空间和高功率利用率。由于这个原因,在HT中提出了实值快速傅里叶变换(RFFT)和逆RFFT(IRFFT)技术。在第四阶段,使用Beth Israel医院麻省理工学院(MIT-BIH)心律失常数据库评估R-peak确认,其平均准确度为99.86%,敏感性为99.95%,阳性预测率为99.90%。

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