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DSP and Microcontroller based Speech Processor for Auditory Prosthesis

机译:基于DSP和微控制器的语音假肢语音处理器

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Auditory Prostheses is necessary for the hearing impaired personnel. Auditory Prostheses is an artificial replacement of damaged inner ear using external body worn speech processor and internal receiver-stimulator for stimulating auditory nerve via electrode array that enables understanding the speech by brain. Speech processor receives an external sound or speech and generates encoded speech data bits for transmission to receiver-stimulator. Development of the Speech Processor of Auditory Prostheses (SPAP) is based on the Analog Devices Digital Signal Processor ADSP-2181 is described. The Dalls DS89C420 micro controller is used as data encoder to send speech information from speech processor to receiver-stimulator via RF transcutaneous link. The system comprises a speech processor, micro-controller based data encoder, radio frequency transmitter, receiver-stimulator, and an electrode array of six electrodes. A six channel Continuous Interleaved Sampling (CIS) algorithm is implemented for the speech processor. A multi-channel cochlear implant of 6 electrodes or simulated resistance array can be driven by the receiver-stimulator for testing its performance. The implementation aspects of CIS algorithm are validated using the test data of speech samples. The results are presented using laboratory model of receiver-stimulator and simulated electrode resistance array with a high-speed data acquisition system.
机译:听觉假肢对于听力受损的人员是必需的。听觉假肢是使用外部佩戴的语音处理器和内部接收器刺激器对受损的内耳进行的人工替换,用于通过电极阵列刺激听觉神经,从而能够通过大脑来理解语音。语音处理器接收外部声音或语音,并生成编码后的语音数据位,以传输到接收器-刺激器。听觉假肢语音处理器(SPAP)的开发基于对ADI公司的数字信号处理器ADSP-2181的描述。 Dalls DS89C420微控制器用作数据编码器,可通过射频经皮链路将语音信息从语音处理器发送到接收器-刺激器。该系统包括语音处理器,基于微控制器的数据编码器,射频发射器,接收器-刺激器以及六个电极的电极阵列。为语音处理器实现了六通道连续交错采样(CIS)算法。接收器刺激器可以驱动6电极或模拟电阻阵列的多通道人工耳蜗植入物,以测试其性能。使用语音样本的测试数据验证了CIS算法的实现方面。使用接收器-刺激器的实验室模型和带有高速数据采集系统的模拟电极电阻阵列来显示结果。

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    《》|2006年|518-522|共5页
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    Kumar; K. Raja; Ramaiah; P. Seetha;

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