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首页> 外文期刊>ETRI journal >Folded Architecture for Digital Gammatone Filter Used in Speech Processor of Cochlear Implant
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Folded Architecture for Digital Gammatone Filter Used in Speech Processor of Cochlear Implant

机译:人工耳蜗语音处理器中使用的数字伽马通滤波器的折叠架构

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Emerging trends in the area of digital very large scale integration (VLSI) signal processing can lead to a reduction in the cost of the cochlear implant. Digital signal processing algorithms are repetitively used in speech processors for filtering and encoding operations. The critical paths in these algorithms limit the performance of the speech processors. These algorithms must be transformed to accommodate processors designed to be high speed and have less area and low power. This can be realized by basing the design of the auditory filter banks for the processors on digital VLSI signal processing concepts. By applying a folding algorithm to the second-order digital gammatone filter (GTF), the number of multipliers is reduced from five to one and the number of adders is reduced from three to one, without changing the characteristics of the filter. Folded second-order filter sections are cascaded with three similar structures to realize the eighth-order digital GTF whose response is a close match to the human cochlea response. The silicon area is reduced from twenty to four multipliers and from twelve to four adders by using the folding architecture.
机译:数字超大规模集成电路(VLSI)信号处理领域的新兴趋势可以导致人工耳蜗植入的成本降低。数字信号处理算法在语音处理器中反复使用,以进行过滤和编码操作。这些算法中的关键路径限制了语音处理器的性能。必须对这些算法进行改造,以适应设计为高速,面积较小和低功耗的处理器。这可以通过基于数字VLSI信号处理概念的处理器听觉滤波器组的设计来实现。通过将折叠算法应用于二阶数字Gammatone滤波器(GTF),乘法器的数量从5个减少到1个,加法器的数量从3个减少到1个,而不会改变滤波器的特性。折叠的二阶滤波器部分与三个类似的结构层叠在一起,以实现其响应与人类耳蜗响应非常匹配的第八阶数字GTF。通过使用折叠架构,硅面积从二十个乘法器减少到四个,从十二个减法器减少到四个。

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