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Performance Analysis of Wave Field Simulation with the Functional Transformation Method

机译:功能变换方法波场模拟性能分析

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The application of the Functional Transformation Method (FTM) for the simulation of acoustical wave fields has been recently extended to complex room geometries by the usage of so called "block-based" modeling techniques. The complete model is split into several elementary blocks with simple geometry, which are solved separately with the FTM and reconnected in the discrete system with Wave Digital Filter (WDF) principles. Concerning the performance of this algorithm, two questions arise: how much additional error is introduced compared with an all-in-one FTM solution, and how accurate are the FTM simulations compared with classical methods (e.g. digital waveguide meshes). This paper offers an answer for both questions by proving, that the worst-case scenario of the proposed procedure, I.e. minimum size block models, is identical to a waveguide mesh. The complete derivation is first performed for 1D models and then extended to 2D wave fields, demonstrating the equivalence of minimum-size block-based FTM modeling and digital waveguide meshes.
机译:函数变换方法(FTM)对声波场的模拟的应用已经通过使用所谓的“基于块”建模技术来扩展到复杂的房间几何形状。完整的模型分为几个基本块,具有简单的几何形状,其与FTM分开解决,并在具有波数字滤波器(WDF)原理的离散系统中重新连接。关于该算法的性能,出现了两个问题:与一体化FTM解决方案相比,引入了多少误差,以及与经典方法相比的FTM模拟的准确程度(例如,数字波导网格)。本文通过证明,提供了两个问题的答案,即所提出的程序的最坏情况,即最小尺寸块模型与波导网格相同。首先为1D模型执行完整导出,然后扩展到2D波场,展示基于最小块的FTM建模和数字波导网格的等价性。

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