Title :
VHDL Modelling of Fixed-point DWT for the Purpose of EMG Signal Denoising
Author :
Ahsan, Md Rezwanul ; Ibrahimy, Muhammad Ibn ; Khalifa, Othman Omran
Author_Institution :
Electr. & Comput. Eng. Dept., Int. Islamic Univ. Malaysia (HUM), Kuala Lumpur, Malaysia
Abstract :
Wavelet Transform (WT) has been widely applied in biomedical signal analysis. This paper will present the denoising method of EMG signal using WT and its model processed by VHSIC (Very High Speed Integrated Circuit) Hardware Description Language (VHDL) model of it. The principle of wavelet denoising is first to decompose the signal by performing a WT, followed by applying suitable thresholds to the detail coefficients, zeroing all coefficients below their associated thresholds, and finally to reconstruct the denoised signal based on the modified detail coefficients. Discrete Wavelet Transform (DWT) is a method that uses wavelet analyzer in which case the signal split into small pieces preserving both time and frequency properties. The Second order of Daubechies family (db2) has been used to denoise EMG signals. The simulation, synthesis and verification of the design presents a fast and reliable prototyping of DWT for denoising of EMG signals.
Keywords :
discrete wavelet transforms; electromyography; hardware description languages; medical signal processing; signal denoising; signal reconstruction; software prototyping; software reliability; very high speed integrated circuits; DWT prototyping; EMG signal denoising; VHDL modelling; VHSIC hardware description language model; biomedical signal analysis; denoised signal reconstruction; denoising method; discrete wavelet transform; fixed-point DWT; frequency property; modified detail coefficients; second order of Daubechies family; time property; very high speed integrated circuit hardware description language model; wavelet analyzer; wavelet denoising; Discrete wavelet transforms; Electromyography; Integrated circuit modeling; Noise; Solid modeling; DWT; Daubechies; Electromyography; Fixed-point; VHDL;
Conference_Titel :
Computational Intelligence, Communication Systems and Networks (CICSyN), 2011 Third International Conference on
Conference_Location :
Bali
Print_ISBN :
978-1-4577-0975-3
Electronic_ISBN :
978-0-7695-4482-3
DOI :
10.1109/CICSyN.2011.58