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Microphones' directivity for the localization of sound sources

机译:麦克风对声源定位的方向性

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In a recent paper [P. Rizzo, G. Bordoni, A. Marzani, and J. Vipperman, "Localization of Sound Sources by Means of Unidirectional Microphones, Meas. Sci. Tech., 20, 055202 (12pp), 2009] the proof-of-concept of an approach for the localization of acoustic sources was presented. The method relies on the use of unidirectional microphones and amplitude-based signals' features to extract information about the direction of the incoming sound. By intersecting the directions identified by a pair of microphones, the position of the emitting source can be identified. In this paper we expand the work presented previously by assessing the effectiveness of the approach for the localization of an acoustic source in an indoor setting. As the method relies on the accurate knowledge of the microphones directivity, analytical expression of the acoustic sensors polar pattern were derived by testing them in an anechoic chamber. Then an experiment was conducted in an empty laboratory by using an array of three unidirectional microphones. The ability to locate the position of a commercial speaker placed at different positions in the room is discussed. The objective of this study is to propose a valid alternative to the common application of spaced arrays and therefore to introduce a new generation of reduced size sound detectors and localizers. The ability of the proposed methodology to locate the position of a commercial speaker placed at different positions in the room was evaluated and compared to the accuracy provided by a conventional time delay estimate algorithm
机译:在最近的一篇论文中[P. Rizzo,G。Bordoni,A。Marzani和J. Vipperman,“借助单向麦克风对声源进行定位,Meas。Sci。Tech。,20,055202(12pp),2009]的概念验证提出了一种声源定位的方法,该方法依靠使用单向麦克风和基于幅度的信号特征来提取有关传入声音方向的信息,通过与一对麦克风确定的方向相交,在本文中,我们通过评估室内声源定位方法的有效性来扩展先前介绍的工作,因为该方法依赖于对麦克风指向性的准确了解,因此通过在消声室中进行测试来导出声传感器的极性模式的表达式,然后在空实验室中使用三个单向麦克风阵列进行实验耳机。讨论了定位放置在房间中不同位置的商用扬声器的位置的能力。这项研究的目的是提出一种有效的替代方法,以代替间隔阵列的通用应用,从而引入新一代的尺寸减小的声音检测器和定位器。评估了所提出方法论定位放置在房间中不同位置的商用扬声器的位置的能力,并将其与常规时延估计算法提供的准确性进行了比较

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