Design of a hardware-based discrete wavelet transform architecture for phoneme recognition
Michelle Cutajar, Edward Gatt, I. Grech, Owen Casha, Joseph Micallef · 2014
This paper presents the design of a digital hardware implementation based on Discrete Wavelet Transforms (DWTs) for the task of feature extraction in a multi-speaker phoneme recognition system. This is the first research where the design of a hardware-based DWT design is directed towards a speech recognition application. In the proposed architecture, the lifting-scheme approach employing the orthogonal Daubechies wavelet of order 5 was considered. The designed system was synthesised on a Xilinx Virtex-II XC2V3000 FPGA, and evaluated with the TIMIT corpus. This hardware-based DWT architecture is then intended to be implemented on a dedicated chip, along with the hardware implementation of the classification stage of the proposed phoneme recognition system, in order to further improve the resultant performance.