翘曲TSP:一种对背景噪声和谐波失真具有鲁棒性的声学测量信号

M. Morise, T. Irino, Hideki Banno
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引用次数: 14

摘要

TSP (time - stretching Pulse, lin-TSP)和对数TSP (log-TSP)通常用于音频系统和室内声学的脉冲响应测量。但每种环境的最佳测试信号是不同的。为了在被测脉冲响应中获得更好的信噪比,有必要针对每种环境选择合适的测试信号。提出了lin-TSP和log-TSP混合的新型声学测量信号。所提出的信号被称为“扭曲的tsp”,其信噪比高于lin-TSP和log-TSP。它还提供了一种消除由于重放系统造成的谐波失真的手段。本文介绍了翘曲型tsp的定义和特征,并与lin-TSP和log-TSP进行了比较。本文还讨论了扭曲tsp的参数、扭曲tsp的幅频特性以及谐波畸变对表示分量的影响。在此基础上,给出了一种针对特定测量环境选择翘曲tsp最优参数的方法。在不同环境噪声条件下进行的一系列脉冲响应测量表明,就所测脉冲响应的信噪比而言,该方法在所有条件下都优于lin-TSP和log-TSP。©2006 Wiley期刊公司电子工程学报,2009,31 (4):393 - 398;在线发表于Wiley InterScience (www.interscience.wiley.com)。DOI 10.1002 / ecjc.20260
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Warped‐TSP: An acoustic measurement signal robust to background noise and harmonic distortion
TSP (Time-Stretched Pulse, lin-TSP afterwards) and logarithmic TSP (log-TSP) are commonly used in impulse response measurements of audio systems and room acoustics. But the optimal test signal for each environment is different. It is necessary to choose an appropriate test signal for each environment to achieve a better SNR in the measured impulse response. A new acoustic measurement signal that is a hybrid signal of lin-TSP and log-TSP is proposed. The proposed signal, called “warped-TSP,” achieves an SNR higher than that obtained by lin-TSP and log-TSP. It also provides a means to eliminate harmonic distortion due to the reproduction system. In this paper, the definition and features of warped-TSP are introduced in comparison with lin-TSP and log-TSP. We also present the relations between the parameters of warped-TSP, the amplitude frequency characteristics of warped-TSP, and the effects on the representation components due to harmonic distortion. Based on these discussions, a method of selecting the optimal parameters of warped-TSP for a specific measuring environment is given. A series of impulse response measurements performed under different ambient noise conditions revealed that the proposed method outperformed lin-TSP and log-TSP under all conditions in terms of the SNR of the measured impulse response. © 2006 Wiley Periodicals, Inc. Electron Comm Jpn Pt 3, 90(4): 18– 26, 2007; Published online in Wiley InterScience (www.interscience.wiley.com). DOI 10.1002/ecjc.20260
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