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首页> 外文期刊>Circuits, Devices & Systems, IET >Analysis and implementation of low-power perceptual multiband noise reduction for the hearing aids application
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Analysis and implementation of low-power perceptual multiband noise reduction for the hearing aids application

机译:助听器应用的低功率感知多频带降噪的分析和实现

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摘要

Traditional noise reduction designs provide good performance but suffer from high complexity and long latency, which limits their application to hearing aids. Targeted for strict low-power and low-latency requirement of completely-in-the-canal type hearing aids, this study analyses and implements a previously proposed sample-based perceptual multiband spectral subtraction with a multiplication-based entropy voice activity detection. Simulation results reveal that the authors design can provide similar speech quality as others, but with lower computational complexity and simple control effort. The corresponding core-based architecture design further exploits processing characteristics of the proposed approach to reduce power consumption with a sign-magnitude and a preprocessed input data reuse scheme. Chip measurement shows that the design only consumes 83.7 μW at 0.6 V operation with 90 nm high threshold voltage (HVT) (high ) standard cell library.
机译:传统的降噪设计提供了良好的性能,但是却具有很高的复杂性和较长的等待时间,这限制了它们在助听器中的应用。针对完全在耳道式助听器中对低功率和低延迟的严格要求,本研究分析并实现了以前提出的基于样本的感知多频带频谱减法以及基于乘法的熵语音活动检测。仿真结果表明,作者的设计可以提供与其他人相似的语音质量,但计算复杂度较低且控制工作简单。相应的基于内核的体系结构设计进一步利用提出的方法的处理特性,以符号幅度和预处理的输入数据重用方案来降低功耗。芯片测量表明,在90 V高阈值电压(HVT)(高)标准单元库的情况下,该设计在0.6 V工作时仅消耗83.7μW。

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