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Improvement of Signal Quality During Recovery of Compressively Sensed ECG Signals

机译:恢复压缩感测的心电图信号期间的信号质量的提高

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This paper investigates the application of the newly proposed Kronecker-based method for the reconstruction of compressively sensed electrocardiogram (ECG) signals. By applying the Kronecker-based method, ECG signal acquisition is done in smaller lengths. Collection of smaller length of ECG signals leads to fewer arithmetic operations during the compression phase. Instead of recovering individually in smaller lengths, recovery is done over several concatenated segments. This newly proposed recovery method improves the quality of the reconstructed signal when compared to the traditional recovery done without concatenation. Two random measurement matrices, namely the Gaussian and the Bernoulli matrices, are considered as sensing matrices in this study and the methodology is evaluated using 10 ECG signals acquired from the MIT arrhythmia database. The random Bernoulli matrix is found to provide better quality of recovered compressed ECG signal even with the traditional compressive recovery techniques. Recovery by the newly proposed Kronecker-based method results in higher SNR in all the ECG signals when the compression ratio (CR) is 25% or 50% and when the CR is 75%, improvement is observed in majority of the ECG signals. Lower CRs provide better reconstruction than higher CRs. The Kronecker-based recovery method may be useful for wearable ECG devices.
机译:本文调查了新提出的基于Kronecker的基于方法的应用,以重建压缩的心电图(ECG)信号。通过应用基于Kroncker的方法,ECG信号采集在较小的长度下进行。较小的ECG信号集合导致压缩阶段期间的算术运算较少。而不是单独恢复较小的长度,恢复在几个连接段中完成。与在没有连接的没有连接时,这种新提出的恢复方法提高了重建信号的质量。两个随机测量矩阵,即高斯和伯努利矩阵被认为是本研究中的感测矩阵,并且使用从MIT心律失常数据库获取的10个ECG信号来评估方法。即使使用传统的压缩恢复技术,也发现随机伯努利矩阵提供更好的恢复压缩ECG信号质量。当压缩比(Cr)为25%或50%时,基于新提出的基于Kronecker的方法恢复导致所有ECG信号中的较高的SNR。当CR为75%时,在大多数ECG信号中观察到改进。下部CR提供比高级CRS更好的重建。基于Kronecker的恢复方法对于可穿戴的ECG设备可能是有用的。

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