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Design Methodology of a New Wavelet Basis Function for Fetal Phonocardiographic Signals

机译:胎儿心动脉造影信号新小波基函数的设计方法

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Fetal phonocardiography (fPCG) based antenatal care system is economical and has a potential to use for long-term monitoring due to noninvasive nature of the system. The main limitation of this technique is that noise gets superimposed on the useful signal during its acquisition and transmission. Conventional filtering may result into loss of valuable diagnostic information from these signals. This calls for a robust, versatile, and adaptable denoising method applicable in different operative circumstances. In this work, a novel algorithm based on wavelet transform has been developed for denoising of fPCG signals. Successful implementation of wavelet theory in denoising is heavily dependent on selection of suitable wavelet basis function. This work introduces a new mother wavelet basis function for denoising of fPCG signals. The performance of newly developed wavelet is found to be better when compared with the existing wavelets. For this purpose, a two-channel filter bank, based on characteristics of fPCG signal, is designed. The resultant denoised fPCG signals retain the important diagnostic information contained in the original fPCG signal.
机译:胎儿脑心动脉造影(FPCG)的产前护理系统是经济的,并且由于系统的非侵入性,具有用于长期监测的可能性。该技术的主要限制是在获取和传输期间噪声叠加在有用信号上。传统的滤波可能导致来自这些信号的有价值的诊断信息。这需要适用于不同操作情况的强大,多功能和可适应的去噪方法。在这项工作中,已经开发了一种基于小波变换的新型算法,用于去寻找FPCG信号。在去噪中的小波理论的成功实施严重依赖于选择合适的小波基函数。这项工作引入了一种新的小波基函数,用于去噪FPCG信号。与现有小波相比,发现新开发的小波的性能更好。为此,设计了一种基于FPCG信号特性的双通道滤波器组。所得到的去噪FPCG信号保留原始FPCG信号中包含的重要诊断信息。

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