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Modeling of Human Voice Box in VLSI for Low Power Biomedical Applications

机译:用于低功耗生物医学应用的VLSI中的人声箱建模

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Communication is heavily dependent on ideas expressed through speech. The ideas and tonal qualities during vocal expression give voice an idea about person characteristics and personality. The estimation of vocal tract configuration from speech sound to represent speech events with robust and compact signals that describe the salient features of speech is an important area of speech communication. The Human Voice Box (Glottis) is the source of voice production and an important part of human body. Recent techniques of speech processing, such as speech recognition and speech synthesis, use the glottal closure and opening instants. Current models of the glottal waves derive their shape from approximate information rather than from exactly measured data. In this work, an electrical model of Human Voice Box is presented by exploiting fluid volume velocity to current and fluid pressure to voltage. The glottis modeled as current source includes linear and nonlinear impedances to represent laminar and turbulent flow, respectively, in the vocal tract. The complete model of glottis runs at power supply of 1.8 volt and the design is verified in a standard TSMC 0.18 micrometer technology on BSIM 3v3 model using ELDO Simulator.
机译:交流在很大程度上取决于通过语音表达的想法。声音表达过程中的观念和音质使声音对人的性格和性格有所了解。从语音中估计具有语音信号的健壮而紧凑的信号来代表语音事件的声道配置估计是语音通信的重要领域。人声箱(Glottis)是声音产生的来源,是人体的重要组成部分。语音处理的最新技术,例如语音识别和语音合成,使用声门关闭和打开瞬间。当前的声门波模型是从近似信息而不是从精确测量的数据中得出其形状的。在这项工作中,通过将流体体积速度转化为电流,并将流体压力转化为电压,提出了人声箱的电气模型。建模为电流源的声门包括线性和非线性阻抗,分别代表声道中的层流和湍流。完整的声门模型在1.8伏电源下运行,并且使用ELDO Simulator在BSIM 3v3模型的标准TSMC 0.18微米技术中对该设计进行了验证。

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