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Real-time DWT-based compression for wearable Electrocardiogram monitoring system

机译:基于实时小波变换的可穿戴心电图监测系统压缩

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Compression of Electrocardiogram signal is important for digital Holters recording, signal archiving, transmission over communication channels and Telemedicine. This paper introduces an effective real-time compression scheme to overcome the limitation of payload size of the transmission channel. This scheme utilizes the Discrete Wavelet Transform (DWT), Bit-Field Preserving (BFP) and Running Length Encoding (RLE) methods which showed efficient compression results. The scheme dynamically checks if the compressed packets fit into the available payload. If not, the original signal will be divided into blocks and each block will be re-compressed again. The dynamic scheme was tested on large and small number of samples. The results show that a small block of 64, 128 or 256 samples will not affect the compression performance and no distortion occurred on the reconstructed signal.
机译:心电图信号的压缩对于数字动态心电记录,信号存档,通过通信通道传输和远程医疗非常重要。本文提出了一种有效的实时压缩方案,以克服传输信道有效载荷大小的限制。该方案利用离散小波变换(DWT),位域保留(BFP)和运行长度编码(RLE)方法,显示了有效的压缩结果。该方案动态检查压缩的数据包是否适合可用的有效负载。如果不是,则原始信号将被划分为块,并且每个块将再次被重新压缩。在大量样本和少量样本上测试了动态方案。结果表明,一小块包含64、128或256个样本的块不会影响压缩性能,并且在重建的信号上不会发生失真。

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