使用非共面传声器阵列的声源定位几何

Xavier Alameda-Pineda, R. Horaud, B. Mourrain
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引用次数: 2

摘要

本文讨论了使用任意形状的非共面传声器阵列从时间延迟估计中定位声源的任务。我们充分利用了直接路径传播模型,我们的贡献有三个方面:我们提供了一组时间延迟对应于声源位置的充分必要条件,证明了该位置的唯一性,以及检索它的定位映射。将时滞估计任务转化为一个受时滞充要条件约束的非线性多元优化问题。研究了两种用于估计时延和定位声源的全局优化技术。我们报告了一组广泛的实验,并与最先进的方法在噪声和混响存在下的模拟和真实数据进行了比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The geometry of sound-source localization using non-coplanar microphone arrays
This paper addresses the task of sound-source localization from time delay estimates using arbitrarily shaped non-coplanar microphone arrays. We fully exploit the direct path propagation model and our contribution is threefold: we provide a necessary and sufficient condition for a set of time delays to correspond to a sound source position, a proof of the uniqueness of this position, and a localization mapping to retrieve it. The time delay estimation task is casted into a non-linear multivariate optimization problem constrained by necessary and sufficient conditions on time delays. Two global optimization techniques to estimate time delays and localize the sound source are investigated. We report an extensive set of experiments and comparisons with state-of-the-art methods on simulated and real data in the presence of noise and reverberations.
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