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Far field-aware SOC design for sound source location based on 0.18-µm CMOS process

机译:基于0.18 µm CMOS工艺的远场感知SOC设计,用于声源定位

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In this study, we introduce a far field-aware system on a chip (SOC) design for sound source location, which is implemented with 0.18-µm CMOS process. The adopted method for the proposed system is based on average magnitude difference function (AMDF). In order to effectively detect the acoustical source in actual environment, we integrate this system with voice active detection (VAD), which can actively discover the diversity of sound voice. Furthermore, this presented structure is capable of detecting the high intensity anthropogenic sound automatically at any time. For experimental setup, we utilize a microphone pair to localize the single sound source. The performance of our proposed system can achieve 90% accuracy rate within ±5° average angle error. For source distance measurement, the identifying distance can be up to 5 meters. The far field-aware sound source location system chip occupies 2.86mm×3.56mm silicon area, and its average power consumption is 43mW.
机译:在这项研究中,我们介绍了一种用于声源定位的远场感知片上系统(SOC)设计,该系统采用0.18 µm CMOS工艺实现。所建议系统采用的方法基于平均幅度差函数(AMDF)。为了有效地检测实际环境中的声源,我们将该系统与语音主动检测(VAD)集成在一起,可以主动发现声音的多样性。此外,该提出的结构能够在任何时间自动检测高强度的人为声音。对于实验设置,我们利用麦克风对来定位单个声源。我们提出的系统的性能可以在±5°的平均角度误差内达到90%的准确率。对于源距离测量,识别距离最多可以达到5米。远场声源定位系统芯片占地硅面积为2.86mm×3.56mm,其平均功耗为43mW。

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