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Multiple source localization in the spherical harmonic domain using augmented intensity vectors based on grid search

机译:使用基于网格搜索的增强强度矢量在球谐域中进行多源定位

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Multiple source localization is an important task in acoustic signal processing with applications including dereverberation, source separation, source tracking and environment mapping. When using spherical microphone arrays, it has been previously shown that Pseudo-intensity Vectors (PIV), and Augmented Intensity Vectors (AIV), are an effective approach for direction of arrival estimation of a sound source. In this paper, we evaluate AIV-based localization in acoustic scenarios involving multiple sound sources. Simulations are conducted where the number of sources, their angular separation and the reverberation time of the room are varied. The results indicate that AIV outperforms PIV and Steered Response Power (SRP) with an average accuracy between 5 and 10 degrees for sources with angular separation of 30 degrees or more. AIV also shows better robustness to reverberation time than PIV and SRP.
机译:在包括去混响,源分离,源跟踪和环境映射在内的应用中,多源定位是声学信号处理中的重要任务。当使用球形麦克风阵列时,以前已经表明,伪强度矢量(PIV)和增强强度矢量(AIV)是估计声源到达方向的有效方法。在本文中,我们评估涉及多个声源的声学场景中基于AIV的定位。进行模拟,其中改变声源的数量,它们的角度间隔和房间的混响时间。结果表明,对于角度间隔为30度或更大的光源,AIV的性能优于PIV和转向响应功率(SRP),平均精度在5至10度之间。 AIV还显示出比PIV和SRP更好的混响时间鲁棒性。

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