DocumentCode
1133548
Title
Chip design of portable speech memopad suitable for persons with visual disabilities
Author
Wang, Jhing-Fa ; Wang, Jia-Ching ; Chen, Han-Chiang ; Chen, Tai-Lung ; Chang, Chin-Chan ; Shih, Ming-Chi
Author_Institution
Dept. of Electr. Eng., Nat. Cheng Kung Univ., Tainan, Taiwan
Volume
10
Issue
8
fYear
2002
fDate
11/1/2002 12:00:00 AM
Firstpage
644
Lastpage
658
Abstract
This paper presents the design of a speech recognition and compression chip for portable memopad devices, especially suitable for use by the visually impaired. The proposed chip design is based on several cores of which they can be regarded as intellectual property (IP) cores to be used for a variety of speech-related application systems. A cepstrum extraction core and a dynamic warping core are designed for mapping the speech recognition algorithms. In the cepstrum extraction core, a novel architecture computes the autocorrelation between the overlapping frames using two pairs of shift registers and an intelligent accumulation procedure. The architecture of the dynamic time warping core uses only a single processing element, and is based on our extensive study of the relationship among the nodes in the dynamic time warping lattice. Bit rate is the key factor affecting the memory size for speech compression; therefore, a very low bit-rate speech coder is used. The speech coder exploits a line-spectrum-based interpolation method, which yields fine quality synthesized speech despite the low 1.6 kbps bit rate. The 1.6 kbps vocoder core is cost-effective, and it integrates both encoder and decoder algorithms. The proposed design has been tested via hardware simulations on Xilinx Virtex series FPGAs and a semi-custom chip fabricated by 0.35 μm CMOS single-poly-four-metal technology on a die size approximately 4.46×4.46 mm2.
Keywords
CMOS logic circuits; VLSI; biomedical electronics; cepstral analysis; computer architecture; field programmable gate arrays; handicapped aids; integrated circuit design; interpolation; portable instruments; speech recognition equipment; vocoders; 0.35 micron; 1.6 kbit/s; CMOS single-poly-four-metal technology; FPGAs; IP cores; autocorrelation; bit rate; cepstrum extraction core; chip design; decoder; dynamic warping; intellectual property cores; intelligent accumulation procedure; line-spectrum-based interpolation method; memory size; overlapping frames; portable speech memopad; semi-custom chip; shift registers; speech compression chip; speech recognition; synthesized speech; very low bit-rate speech coder; visual disabilities; vocoder; Algorithm design and analysis; Autocorrelation; Bit rate; CMOS technology; Cepstrum; Chip scale packaging; Computer architecture; Intellectual property; Speech recognition; Speech synthesis;
fLanguage
English
Journal_Title
Speech and Audio Processing, IEEE Transactions on
Publisher
ieee
ISSN
1063-6676
Type
jour
DOI
10.1109/TSA.2002.805645
Filename
1175535
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