Title :
An advanced hardware design based on ensemble empirical mode decomposition algorithm for heart sound signal processing
Author :
Chia-Ching Chou ; Kuen-Chih Lin ; Wai-Chi Fang ; Li, Arvin Huang-Te ; Yu-Ching Chang ; Bai-Kuang Hwang ; Yio-Wha Shau
Author_Institution :
Dept. of Electron. Eng., Nat. Chiao Tung Univ., Hsinchu, Taiwan
Abstract :
In this study, an advanced hardware design for heart sound signal processing based on ensemble empirical mode decomposition (EEMD) is developed and implemented. The EEMD method [1] is developed to alleviate a key drawback in the original empirical mode decomposition (EMD) algorithm. In a previous research, Huang et al. [2] developed an adaptive and efficient EMD method for nonlinear and nonstationary signal analysis. The physical meaning of a single intrinsic mode function (IMF) is obscure, and the original EMD algorithm cannot separate signals with different scales into appropriate IMFs. To overcome this major drawback, a noise-assisted data analysis (NADA) method called EEMD is developed. Heart sound signals are fed into the proposed system to simulate the EEMD-fixed-point performance. A comparison of the floating-point and fixed-point results exhibits satisfactory consistency and demonstrates that our design can accommodate wide variations of dynamic ranges and complicated calculations.
Keywords :
cardiology; data analysis; medical signal processing; signal denoising; EEMD algorithm; EEMD-fixed-point performance; IMF; NADA; advanced hardware design; ensemble empirical mode decomposition algorithm; heart sound signal processing; noise-assisted data analysis; nonstationary signal analysis; single intrinsic mode function; Algorithm design and analysis; Empirical mode decomposition; Hardware; Heart; Signal processing algorithms; White noise; Ensemble Empirical Mode Decomposition; Signal processing;
Conference_Titel :
Consumer Electronics (ISCE), 2013 IEEE 17th International Symposium on
Conference_Location :
Hsinchu
Print_ISBN :
978-1-4673-6198-9
DOI :
10.1109/ISCE.2013.6570241