A linear quality control design for high efficient wavelet-based ECG data compression

Abstract In ECG data compression, maintaining reconstructed signal with desired quality is crucial for clinical application. In this paper, a linear quality control design based on the reversible round-off non-recursive discrete periodized wavelet transform (RRO-NRDPWT) is proposed for high efficien...

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Veröffentlicht in:Computer methods and programs in biomedicine 2009-05, Vol.94 (2), p.109-117
Hauptverfasser: Hung, King-Chu, Tsai, Chin-Feng, Ku, Cheng-Tung, Wang, Huan-Sheng
Format: Artikel
Sprache:eng
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Zusammenfassung:Abstract In ECG data compression, maintaining reconstructed signal with desired quality is crucial for clinical application. In this paper, a linear quality control design based on the reversible round-off non-recursive discrete periodized wavelet transform (RRO-NRDPWT) is proposed for high efficient ECG data compression. With the advantages of error propagation resistance and octave coefficient normalization, RRO-NRDPWT enables the non-linear quantization control to obtain an approximately linear distortion by using a single control variable. Based on the linear programming, a linear quantization scale prediction model is presented for the quality control of reconstructed ECG signal. Following the use of the MIT-BIH arrhythmia database, the experimental results show that the proposed system, with lower computational complexity, can obtain much better quality control performance than that of other wavelet-based systems.
ISSN:0169-2607
1872-7565
DOI:10.1016/j.cmpb.2008.08.007