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A discussion on impedance boundary conditions for room acoustics simulations measured by ensemble averaging method

机译:通过集合平均法测量室声学模拟阻抗边界条件的探讨

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With the continuous progress of digital computers, it has come to be possible for wave-based methods like finite element method (FEM) to solve sound fields of rooms with certain large volumes. Herein, at first, the frequency upper limitation of FEM sound field analysis is discussed in relation to the recent computational environment, room's volume and accuracy achieved. The accuracy of computed results strongly depends on the modeling of the boundary conditions and absorption modeling is a crucial problem in these decades because of insufficient amount of reliable impedance database. In our previous paper, we proposed a novel method for measuring materials' surface normal impedance using ensemble averaging technique (EA method). Herein, the outline of EA method is summarized briefly and advantages of applying EA method to construct boundary conditions of FEM sound field analyses are discussed. In the discussion, uncertainties of EA method measurements are investigated from the view point of pressure-velocity-sensor (PU-sensor) calibration. Example results of EA method measurements with appropriate calibrations are given to show the basic potential of EA method as a measurement method with less uncertainty that is required for room acoustics simulations. Finally, several applicational simulations are presented to show the validity of the impedance boundary conditions measured by EA method.
机译:随着数字计算机的不断进展,它已经实现了基于波的方法(FEM),以解决具有某些大卷的房间的声音字段。这里,首先,关于最近的计算环境,房间的体积和精度讨论了有限元声场分析的频率上限。计算结果的准确性强烈取决于边界条件的建模,并且由于不足的阻抗数据库量不足,因此在这些数十年中的造型是一个至关重要的问题。在我们之前的论文中,我们提出了一种使用集合平均技术(EA方法)来测量材料表面正常阻抗的新方法。这里,讨论了讨论了EA方法的轮廓,并且讨论了应用EA方法构建有限元声场分析的边界条件的优点。在讨论中,从压力 - 速度传感器(PU传感器)校准的视点来研究EA方法测量的不确定性。通过具有适当校准的EA方法测量的示例结果显示EA方法的基本电位作为室内声学模拟所需的不确定性较少的测量方法。最后,提出了几种应用模拟以显示EA方法测量的阻抗边界条件的有效性。

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