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Phase compensation for multichannel low-frequency response using minimax approximation

机译:使用极大极小近似的多通道低频响应相位补偿

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For a multichannel loudspeaker system, the selection of crossover frequency between the subwoofer and satellite loudspeakers is essential for reconstructing a nearly perfect sound field in the reverberation room. Apart from the distortion-free of individual loudspeakers, the overall spectral variation between the subwoofer and satellite loudspeakers should be minimized around the selected crossover frequency. In this work, we propose a phase compensation scheme based on the minimax approximation to flatten the spectral response around the crossover frequency for the loudspeaker system emphasized on the low-frequency effect. The cascaded all-pass filter is shown to yield an improved low-frequency performance by flattening the net magnitude response in the crossover region. As a result, one example of numerical design based on a reverberant room recording is shown to demonstrate the usefulness of our approach.
机译:对于多声道扬声器系统,选择低音炮和卫星扬声器之间的分频频率对于在混响室内重建近乎完美的声场至关重要。除了各个扬声器的无失真之外,还应在选定的交叉频率附近将低音扬声器和卫星扬声器之间的整体频谱变化减到最小。在这项工作中,我们提出了一种基于极小极大值近似的相位补偿方案,以使针对低频效应强调的扬声器系统的分频频率附近的频谱响应变得平坦。所示的级联全通滤波器通过使分频区域中的净幅值响应平坦化,可以提高低频性能。结果,显示了一个基于混响房间录音的数字设计示例,以证明我们方法的有效性。

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