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TDOA-Based Speed of Sound Estimation for Air Temperature and Room Geometry Inference

机译:基于TDOA的气温和房间几何推断的声音估计速度

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摘要

Spatially distributed acoustic sensors find increasingly many new applications in speech-based human-machine interfaces. One well researched topic is the localization of sound sources from Time Differences Of Arrival (TDOAs) measurements. Typically, the propagation speed of sound is considered a known constant. However due to temperature variations its value is known only up to some uncertainty. This paper exploits TDOA-based localization techniques in order to estimate accurately the actual speed of sound. Experimental results using both simulated and real data demonstrate the feasibility of the proposed method. Furthermore, the practical validation of this work considers two distinct experiments that are aimed at inferring information about enclosed sound fields. The first experiment concerns the calculation of the air temperature from the estimated speed of sound. The second experiment highlights the effects of temperature variations on the inference of the physical location of reflective boundaries of the acoustic enclosure. In the latter case it is shown that the position estimates of the reflective surfaces in a room can be improved when the correct propagation speed is first estimated using this method.
机译:空间分布的声传感器在基于语音的人机界面中发现了越来越多的新应用。一项经过充分研究的主题是根据到达时间差(TDOA)测量来定位声源。通常,声音的传播速度被认为是已知常数。但是,由于温度变化,其值只有在不确定性时才知道。本文利用基于TDOA的定位技术来准确估计声音的实际速度。使用模拟和真实数据的实验结果证明了该方法的可行性。此外,这项工作的实际验证考虑了两个不同的实验,旨在推断有关封闭声场的信息。第一个实验涉及根据估计的声速计算空气温度。第二个实验强调了温度变化对声学外壳反射边界物理位置的推断的影响。在后一种情况下,示出了当使用该方法首先估计正确的传播速度时,可以改善房间中的反射表面的位置估计。

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