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Electrodynamic Loudspeaker Linearization using a Low Complexity pth-Order Inverse Nonlinear Filter

机译:使用低复杂度p阶逆非线性滤波器的电动扬声器线性化

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Nonlinear distortions are very challenging to tackle in electromechanical loudspeakers. They are observed in large signals mode, where high amplitude stimulus drives different components of the transducer to operate in their nonlinear region, resulting in harmonic and intermodulation distortions in the reproduced sounds. Many linearization schemes have been proposed to address this problem, they operate by pre-distorting the input signal before exciting the loudspeaker, in the aim of radiating distortion-free sound waves. In this work, we are interested in the performance evaluation of a low computational complexity feedforward linearization structure which is based on the pth order inverse of a one-dimension Volterra model of the driver. The scheme is designed to compensate for the 2nd and 3rd harmonic distortions. We will study the effect of varying the input voltage amplitude on the harmonic distortions reduction performance. A lumped-parameters model with parameters of a real driver will be used for the evaluation.
机译:非线性失真对于机电扬声器来说是非常具有挑战性的。在大信号模式下观察到它们,在高信号模式下,高振幅刺激驱动换能器的不同组件在其非线性区域中工作,从而导致所再现声音中出现谐波和互调失真。为了解决这个问题,已经提出了许多线性化方案,它们通过在激励扬声器之前对输入信号进行预失真来进行操作,目的是辐射出无失真的声波。在这项工作中,我们对基于驾驶员一维Volterra模型的p阶逆的低计算复杂度前馈线性化结构的性能评估感兴趣。该方案旨在补偿第二和第三谐波失真。我们将研究改变输入电压幅度对降低谐波失真性能的影响。具有实际驱动器参数的集总参数模型将用于评估。

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