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Identification of Volterra Models of Tube Audio Devices Using Multiple-Variance Method

机译:利用多方差方法识别电子管音频设备的Volterra模型

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摘要

The multiple-variance method is a cross-correlation method that exploits input signals with different powers for the identification of a nonlinear system by means of the Volterra series. It overcomes the problem of the locality of the solution of traditional nonlinear identification methods, based on mean square error minimization or cross-correlation, that well approximate the system only for inputs that have approximately the same power of the identification signal. The multiple-variance method permits to improve the performance of models of systems that have inputs with high dynamic, like audio amplifiers. This method is used, for the first time, to identify three different tube amplifiers. The method is applied to a novel reduced Volterra model that allows to overcome the problem of the very large number of coefficients required by the Volterra series by choosing only a proper subset of elements from each kernel. Eventually, the multiple-variance methodology is applied to different real audio tube devices demonstrating the effectiveness of the proposed approach in terms of system identification and computational complexity.
机译:多方差方法是一种互相关方法,该方法利用Volterra级数利用具有不同功率的输入信号来识别非线性系统。它克服了基于均方误差最小化或互相关的传统非线性识别方法解决方案局部性的问题,该方法仅对于具有近似识别信号功率的输入才能够很好地近似系统。多方差方法可以改善具有高动态输入的系统模型的性能,例如音频放大器。首次使用此方法来识别三个不同的电子管放大器。该方法被应用于新颖的简化Volterra模型,该模型允许通过从每个内核中仅选择元素的适当子集来克服Volterra级数所需的非常大的系数的问题。最终,将多方差方法应用于不同的实际音频电子管设备,从系统识别和计算复杂性方面证明了所提出方法的有效性。

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  • 来源
    《Journal of the Audio Engineering Society》 |2018年第10期|823-838|共16页
  • 作者单位

    Department of Information Engineering (DII), Universita Politecnica delle Marche, Ancona, Italy;

    Department of Information Engineering (DII), Universita Politecnica delle Marche, Ancona, Italy;

    Department of Information Engineering (DII), Universita Politecnica delle Marche, Ancona, Italy;

    Department of Information Engineering (DII), Universita Politecnica delle Marche, Ancona, Italy;

    Department of Pure and Applied Sciences, University of Urbino, Urbino, Italy;

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