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An evaluation of hardware-software design for sound source localization based on SoC

机译:基于SoC的声源定位软硬件设计评估

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The article presents an evaluation of sound source localization algorithm based on field-programmable gate array (FPGA) and ARM processor. The proposed architecture performs the computation of azimuth and elevation angles of the speaker location in a real-time. Time-difference of arrival (TDOA) features are computed for a grid with four microphones. The speaker position is estimated by matching the features with the acoustic maps. The influence of line and square placement of the microphones is evaluated. The average azimuth errors for square grids with aperture 0.4 m, 0.6 m, 0.8 m are up to ±7°, ±5° and ±4° respectively. Line grid with 0.4 m step and square grids with 0.6 m and 0.8 m aperture give average 45° = ±4° in a range 45° <; α <; 90° at 2 m distance from grid to speaker.
机译:本文对基于现场可编程门阵列(FPGA)和ARM处理器的声源定位算法进行了评估。所提出的架构实时执行扬声器位置的方位角和仰角的计算。计算具有四个麦克风的网格的到达时间差(TDOA)功能。通过将特征与声学图进行匹配来估计扬声器的位置。评估麦克风的直线和正方形放置的影响。孔径为0.4 m,0.6 m,0.8 m的方格的平均方位角误差分别高达±7°,±5°和±4°。具有0.4 m阶跃的线栅和具有0.6 m和0.8 m孔径的方栅在45°<范围内的平均值为45°=±4°; α<;从格栅到扬声器的2 m距离为90°。

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