High performance 3D sound localization for surveillance applications

F. Keyrouz, K. Diepold, S. Keyrouz
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引用次数: 13

Abstract

One of the key features of the human auditory system, is its nearly constant omni-directional sensitivity, e.g., the system reacts to alerting signals coming from a direction away from the sight of focused visual attention. In many surveillance situations where visual attention completely fails since the robot cameras have no direct line of sight with the sound sources, the ability to estimate the direction of the sources of danger relying on sound becomes extremely important. We present in this paper a novel method for sound localization in azimuth and elevation based on a humanoid head. The method was tested in simulations as well as in a real reverberant environment. Compared to state-of-the-art localization techniques the method is able to localize with high accuracy 3D sound sources even in the presence of reflections and high distortion.
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用于监视应用的高性能3D声音定位
人类听觉系统的关键特征之一是其几乎恒定的全向灵敏度,例如,该系统对来自远离集中视觉注意力的方向的警报信号作出反应。在许多监视情况下,由于机器人摄像机与声源没有直接的视线,视觉注意力完全失效,依靠声音估计危险源方向的能力变得极其重要。本文提出了一种基于人形头部的声音方位和仰角定位新方法。该方法在模拟和真实混响环境中进行了测试。与最先进的定位技术相比,即使在反射和高失真的情况下,该方法也能够高精度地定位3D声源。
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