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An approximate treatment of reflection coefficient in the phased beam tracing method for the simulation of enclosed sound fields at medium frequencies

机译:在中频封闭声场模拟中,相束跟踪法中反射系数的近似处理

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The phased beam tracing method (PBTM) was suggested as a medium-frequency simulation technique for the calculation of impulse response, although main assumptions of geometric acoustics still hold. The phased method needs the reflection coefficient for characterizing the acoustic property of a surface and the complex wave number for describing the propagation characteristics. In this study, two types of approximate real reflection coefficients derived from the measured absorption coefficient were tested for a practical applicability. As a test example, pressure impulse responses and energy impulse responses computed from the PBTM were compared with those from the measurement and the ordinary beam tracing method. The PBTM employing the approximate reflection coefficients greatly increased the accuracy of the prediction compared to the ordinary beam tracing method, in particular at the medium-frequency range in octave bands above the Schroeder cutoff frequency. A comparison was made between angle-dependent and angle-independent reflection coefficients in the calculation of acoustic measures. Although the angle-dependent reflection coefficient yielded best matched results with measured data, but the simple angle-independent reflection coefficient can be also used with a reasonably good precision.
机译:尽管几何声学的主要假设仍然成立,但建议采用相控束跟踪法(PBTM)作为中频仿真技术来计算脉冲响应。分阶段方法需要用于表征表面声学特性的反射系数和用于描述传播特性的复波数。在这项研究中,测试了两种从测得的吸收系数得出的近似真实反射系数的实用性。作为测试示例,将PBTM计算出的压力脉冲响应和能量脉冲响应与测量和常规束跟踪方法的结果进行了比较。与普通的光束跟踪方法相比,采用近似反射系数的PBTM大大提高了预测的准确性,尤其是在Schroeder截止频率以上的八度音带的中频范围内。在声学测量的计算中,对角度相关和角度无关的反射系数进行了比较。尽管与角度相关的反射系数与测量数据的匹配效果最好,但是简单的与角度无关的反射系数也可以以相当好的精度使用。

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