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Design and testing of robust acoustic arrays for localization and enhancement of several bird sources

机译:稳健的声阵列的设计和测试,用于定位和增强多种鸟类声源

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Sensor network technology can revolutionize the study of animal ecology by providing a means of non-intrusive, simultaneous, unmanned monitoring. In this paper, we investigate the design, analysis, and testing of acoustic arrays for localizing bird vocalizations of different species. The spectra of the bird waveforms affect the desired dimension of the array. Microphones are placed in a uniform circular array and are finely synchronized within a few microseconds. We apply the approximate maximum likelihood (AML) method to estimate the source direction-of-arrival (DOA) and perform beamforming for signal enhancement. The crossing of the distributed DOA estimated bearings is used to localize the birds, and the enhanced signals axe used for training and estimation for the classification of the birds. The experimental results demonstrate the practicality and robustness of our array design.
机译:传感器网络技术可以通过提供非侵入式,同时,无人监测的手段来彻底改变动物生态学的研究。在本文中,我们研究了用于定位不同物种的鸟发声的声学阵列的设计,分析和测试。鸟波形的光谱影响阵列的所需维度。麦克风置于均匀的圆形阵列中,并在几微秒内精细地同步。我们应用近似最大可能性(AML)方法来估计源到达方向(DOA)并对信号增强进行波束成形。分布式DOA估计轴承的交叉用于定位鸟类,以及用于培训和估计鸟类分类的增强型信号AX。实验结果展示了我们阵列设计的实用性和鲁棒性。

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