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On Room Impulse Response Measurement Using Perfect Sequences for Wiener Nonlinear Filters

机译:维纳非线性滤波器的使用完美序列的室内脉冲响应测量

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摘要

In a recent paper, we have proposed a novel approach for measuring the room impulse response (RIR) robust toward the nonlinearities affecting the power amplifier or the loudspeaker. The approach is implemented by modeling the acoustic path as a Legendre nonlinear (LN) filter and by measuring the first-order kernel using perfect periodic sequences (PPSs) and the cross-correlation method. PPSs are periodic sequences that guarantee the perfect orthogonality of the basis functions of a certain nonlinear filter over a period. For LN filters, PPSs have approximately a uniform distribution. We have shown that also the Wiener Nonlinear (WN) filters, which derive from the truncation of the Wiener series, admit PPSs, whose sample distribution approximates a Gaussian distribution. Thus, WN filters and their PPSs appear more appealing for measuring the RIR. The paper discusses RIR measurement using WN filters and PPSs and explains how PPSs for WN filter suitable for RIR identification can be developed. Experimental results, using signals affected by real nonlinear devices, illustrate the effectiveness of the proposed approach and compare it with that based on LN filters.
机译:在最近的一篇论文中,我们提出了一种新颖的方法来测量对影响功率放大器或扬声器的非线性具有鲁棒性的房间脉冲响应(RIR)。通过将声学路径建模为Legendre非线性(LN)滤波器,并通过使用完美周期序列(PPS)和互相关方法测量一阶内核,可以实现该方法。 PPS是周期序列,可确保某个非线性滤波器在一段时间内的基函数具有完美的正交性。对于LN滤波器,PPS具有近似均匀的分布。我们已经证明,从维纳级数的截断得到的维纳非线性(WN)滤波器也允许PPS,其采样分布近似于高斯分布。因此,WN滤波器及其PPS似乎对测量RIR更具吸引力。本文讨论了使用WN滤波器和PPS进行RIR测量,并解释了如何开发适用于RIR识别的WN滤波器的PPS。使用受实际非线性设备影响的信号进行的实验结果说明了该方法的有效性,并将其与基于LN滤波器的方法进行了比较。

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