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Reconfigurable Architecture for Multi-lead ECG Signal Compression with High-frequency Noise Reduction

机译:具有高频降噪的多引导ECG信号压缩的可重构架构

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Electrocardiogram (ECG) is a record of the heart's electrical activity over a specified period, and it is the most popular noninvasive diagnostic test to identify several cardiac diseases. It is an integral part of a typical eHealth system, where the ECG signals are often needed to be compressed for long term data recording and remote transmission. Reconfigurable architecture offers high-speed parallel computation unit, particularly the Field Programmable Gate Array (FPGA) along with adaptable software features. Hence, this type of design is suitable for multi-channel signal processing units like ECGs, which usually require precise real-time computation. This paper presents a reconfigurable signal processing unit which is implemented in ZedBoard- a development board for Xilinx Zynq -7000 SoC. The compression algorithm is based on Fast Fourier Transformation. The implemented system can work in real-time and achieve a maximum 90% compression rate without any significant signal distortion (i.e., less than 9% normalized percentage of root-mean-square deviation). This compression rate is 5% higher than the state-of-the-art hardware implementation. Additionally, this algorithm has an inherent capability of high-frequency noise reduction, which makes it unique in this field. The confirmatory analysis is done using six databases from the PhysioNet databank to compare and validate the effectiveness of the proposed system.
机译:心电图(ECG)是在特定时期内心脏电活动的记录,是最受欢迎的非侵入性诊断测试,以鉴定几种心脏病。它是典型的电子医疗系统的一个组成部分,其中通常需要ECG信号来压缩长期数据记录和远程传输。可重构的架构提供高速并行计算单元,特别是现场可编程门阵列(FPGA)以及适应性的软件功能。因此,这种类型的设计适用于像ECG的多通道信号处理单元,这通常需要精确的实时计算。本文介绍了可重新配置的信号处理单元,该信号处理单元在Zedboard- Xilinx Zynq -7000 SoC的开发板中实现。压缩算法基于快速傅里叶变换。所实施的系统可以实时工作,并在没有任何显着信号失真的情况下实现最大90%的压缩速率(即,小于均方根偏差的9%归一化百分比)。这种压缩率比最先进的硬件实现高5%。此外,该算法具有高频降噪的固有能力,这使其在该字段中是独一无二的。使用来自PhysoioNet Databank的六个数据库进行确认分析,以比较和验证所提出的系统的有效性。

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