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Active feedforward noise control and signal tracking of headsets: Electroacoustic analysis and system implementation

机译:耳机的主动馈电噪声控制和信号跟踪:电声分析和系统实现

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摘要

Active noise control (ANC) of headsets is revisited in this paper. An in-depth electroacoustic analysis of the combined loudspeaker-cavity headset system is conducted on the basis of electro-mechano-acoustical analogous circuits. Model matching of the primary path and the secondary path leads to a feedforward control architecture. The ideal controller sheds some light on the key parameters that affect the noise reduction performance. Filtered-X least-mean-squares algorithm is employed to implement the feedforward controller on a digital signal processor. Since the relative delay of the primary path and the secondary path is crucial to the noise reduction performance, multirate signal processing with polyphase implementation is utilized to minimize the effective analog-digital conversion delay in the secondary path. Ad hoc decimation and interpolation filters are designed in order not to introduce excessive phase delays at the cutoff. Real-time experiments are undertaken to validate the implemented ANC system. Listening tests are also conducted to compare the fixed controller and the adaptive controller in terms of noise reduction and signal tracking performance for three noise types. The results have demonstrated that the fixed feedforward controller achieved satisfactory noise reduction performance and signal tracking quality. (C) 2018 Acoustical Society of America.
机译:本文重新预订了耳机的主动噪声控制(ANC)。基于电力学声学类似电路进行组合扬声器腔耳机系统的深入电声分析。主要路径和次级路径的模型匹配导致前馈控制架构。理想的控制器在影响降噪性能的关键参数上缩小一些光。滤波器X最小均值算法用于在数字信号处理器上实现前馈控制器。由于主路径和次级路径的相对延迟对降噪性能至关重要,因此利用了具有多相实现的多速率信号处理来最小化次要路径中的有效模数转换延迟。 ad hoc dizimation和插值过滤器是为了不在截止的情况下引入过多的相位延迟。进行实时实验以验证实施的ANC系统。还进行了聆听测试,以将固定控制器和自适应控制器进行比较,以及用于三种噪声类型的降噪和信号跟踪性能。结果表明,固定馈电控制器实现了令人满意的降噪性能和信号跟踪质量。 (c)2018年声学学会。

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    Natl Tsing Hua Univ Dept Power Mech Engn 101 Sect 2 Kuang Fu Rd Hsinchu 30013 Taiwan;

    Natl Tsing Hua Univ Dept Power Mech Engn 101 Sect 2 Kuang Fu Rd Hsinchu 30013 Taiwan;

    Natl Tsing Hua Univ Dept Power Mech Engn 101 Sect 2 Kuang Fu Rd Hsinchu 30013 Taiwan;

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  • 正文语种 eng
  • 中图分类 声学;
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