Title :
Design of a lab model of a Digital Speech Processor for cochlear implant
Author :
Mahadevan, Preethi ; Pavithra, B. ; Shri Ranjani, S. ; Vijayalakshmi, P. ; Nagarajan, T.
Author_Institution :
Dept. of Electron. & Commun. Eng., SSN Coll. of Eng., Chennai, India
Abstract :
A cochlear implant (CI) is an electronic device that restores partial hearing to a person who is profoundly deaf or severely hard of hearing. In the current work, the TMS320C6713 DSK is used to implement a lab model of the cochlear implant using the uniform band channel vocoder model. The model uses a real-time speech input and the outputs are used to excite point electrodes. As the implantation of electrodes in the inner ear is a surgical procedure, validation of the functioning of the CI model is done using acoustic simulation results. Acoustic CI simulations of cochlear implants are performed using a cepstral vocoder model with Mel-frequency cepstral coefficients. As the performance of each model depends on the perceptual quality of the synthesized speech, the acoustic CI models were used to conduct a listening test using normal hearing subjects for words from the LNT database. The average grade for the uniform band channel vocoder model is found to be 3.9 as against an average grade of 3.1 on a scale of 5 for the cepstral vocoder model.
Keywords :
cochlear implants; speech synthesis; vocoders; CI model; LNT database; Mel-frequency cepstral coefficients; TMS320C6713 DSK; acoustic CI simulations; cepstral vocoder model; cochlear implant; digital speech processor; electrode implantation; electronic device; lab model; listening test; partial hearing restoration; perceptual quality; point electrodes; real-time speech; speech synthesis; surgical procedure; uniform band channel vocoder model; Band pass filters; Cepstral analysis; Cochlear implants; IIR filters; Mathematical model; Speech; Vocoders;
Conference_Titel :
TENCON 2011 - 2011 IEEE Region 10 Conference
Conference_Location :
Bali
Print_ISBN :
978-1-4577-0256-3
DOI :
10.1109/TENCON.2011.6129114