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Performance of phase transform for detecting sound sources with microphone arrays in reverberant and noisy environments

机译:在混响和嘈杂环境中使用麦克风阵列检测声源的相位变换性能

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摘要

The performance of sound source location (SSL) algorithms with microphone arrays can be enhanced by processing signals prior to the delay and sum operation. The phase transform (PHAT) has been shown to improve SSL images, especially in reverberant environments. This paper introduces a modification, referred to as the PHAT-β transform, that varies the degree of spectral magnitude information used by the transform through a single parameter. Performance results are computed using a Monte Carlo simulation of an eight element perimeter array with a receiver operating characteristic (ROC) analysis for detecting single and multiple sound sources. In addition, a Fisher's criterion performance measure is also computed for target and noise peak separability and compared to the ROC results. Results show that the standard PHAT significantly improves detection performance for broadband signals especially in high levels of reverberation noise, and to a lesser degree for noise from other coherent sources. For narrowband targets the PHAT typically results in significant performance degradation; however, the PHAT-β can achieve performance improvements for both narrowband and broadband signals. Finally, the performance for real speech signal samples is examined and shown to exhibit properties similar to both the simulated broad and narrowband cases, suggesting the use of β values between 0.5 and 0.7 for array applications with general signals.
机译:通过在延迟和求和运算之前处理信号,可以增强带有麦克风阵列的声源定位(SSL)算法的性能。相位变换(PHAT)已被证明可以改善SSL图像,尤其是在混响环境中。本文介绍了一种称为PHAT-β变换的修改,该修改通过单个参数来改变该变换使用的频谱幅度信息的程度。使用八元素周边阵列的蒙特卡洛模拟和接收器工作特性(ROC)分析来检测单个和多个声源,可以计算出性能结果。此外,还针对目标和噪声峰值可分离性计算了Fisher准则性能度量,并将其与ROC结果进行了比较。结果表明,标准的PHAT显着提高了宽带信号的检测性能,尤其是在高水平的混响噪声中,而对其他相干源的噪声的影响较小。对于窄带目标,PHAT通常会导致性能显着下降;但是,PHAT-β可以提高窄带和宽带信号的性能。最后,对真实语音信号样本的性能进行了检查,并显示出与模拟的宽带和窄带情况相似的性能,这表明对于具有一般信号的阵列应用,应使用介于0.5和0.7之间的β值。

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