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Effects of source and receiver locations in predicting room transfer functions by a phased beam tracing method

机译:源和接收器位置对相控光束跟踪预测房间传递函数的影响

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摘要

The accuracy of a phased beam tracing method in predicting transfer functions is investigated with a special focus on the positions of the source and receiver. Simulated transfer functions for various source-receiver pairs using the phased beam tracing method were compared with analytical Green’s functions and boundary element solutions up to the Schroeder frequency in simple rectangular rooms with different aspect ratios and absorptions. Only specular reflections were assumed and diffraction was neglected. Three types of error definitions were used: average error level over a narrow band spectrum, average error level over a 1/3 octave band spectrum, and dissimilarity measure. The narrow band error and dissimilarity increased with the source-to-receiver distance but converged to a certain value as the reverberant field became dominant. The 1/3 octave band error was found to be less dependent on the source-receiver distance. The errors are increased as the aspect ratio becomes more disproportionate. By changing the wall absorption from 0.2 to 0.8 for a rectangular room, the average narrow and 1/3 octave band error are deviated by around 1.5 dB. A realistic nonuniform distribution of the absorption increases the error, which might be ascribed to wave phenomena evoked by the impedance-discontinuous boundary.
机译:研究了相控束跟踪方法在预测传递函数中的准确性,并特别关注源和接收器的位置。在具有不同长宽比和吸收率的简单矩形房间中,将使用相控束跟踪法模拟的各种源接收器对的传递函数与解析格林函数和边界元素解直至Schroeder频率进行了比较。仅假定镜面反射并且忽略衍射。使用了三种类型的错误定义:窄带频谱上的平均错误级别,1/3倍频程频谱上的平均错误级别以及不相似性度量。窄带误差和相异性随信源到接收器的距离而增加,但随着混响场占主导地位而收敛到一定值。发现1/3倍频程带误差与源-接收器距离的依赖性较小。随着宽高比变得越来越不均衡,误差会增加。通过将矩形房间的壁吸收从0.2更改为0.8,平均窄带误差和1/3倍频程带误差将偏离1.5 dB。吸收的实际非均匀分布会增加误差,这可能归因于阻抗不连续边界引起的波动现象。

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