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首页> 外文期刊>Japanese journal of applied physics >Three-Dimensional Sound Field Analysis Using Compact Explicit-Finite Difference Time Domain Method with Graphics Processing Unit Cluster System
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Three-Dimensional Sound Field Analysis Using Compact Explicit-Finite Difference Time Domain Method with Graphics Processing Unit Cluster System

机译:图形处理单元群集系统的紧凑型显式时差差分时域方法进行三维声场分析

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摘要

In this study, the compact explicit-finite difference time domain (CE-FDTD) method is applied to the three-dimensional sound field analysis to reduce computer resources. There are various derivative schemes in the CE-FDTD method. They are first examined theoretically to evaluate the numerical accuracy. As a theoretical result, it is found that the interpolated wide band (IWB) scheme has the widest bandwidth in which the cut-off frequency is in agreement with the Nyquist frequency. The calculation performance is theoretically estimated, then experimentally evaluated with the graphics processing unit cluster system. As a result, it is found that the memory usage of the IWB scheme is less than one-third of that of the standard leapfrog (SLF) scheme to achieve the same cut-off frequency. It is also found that the calculation time of the IWB scheme with the shared memory is about 19% compared with that of the SLF scheme with the graphics processing unit (GPU) cluster system. The impulse response is calculated for a large room with a volume capacity of about 4500 m3 in which the sampling rate was 40 kHz. It is confirmed that the three-dimensional sound field with the natural reverberation can be calculated by the IWB scheme.
机译:在这项研究中,将紧凑的显式时差有限时域(CE-FDTD)方法应用于三维声场分析,以减少计算机资源。 CE-FDTD方法中有多种派生方案。首先从理论上检查它们,以评估数值精度。从理论上可以发现,内插宽带(IWB)方案具有最宽的带宽,其中截止频率与奈奎斯特频率一致。理论上估计计算性能,然后使用图形处理单元群集系统进行实验评估。结果,发现为了实现相同的截止频率,IWB方案的内存使用量少于标准跨越式(SLF)方案的内存使用量的三分之一。还发现,与具有图形处理单元(GPU)集群系统的SLF方案相比,具有共享内存的IWB方案的计算时间约为19%。对于一个容量约为4500 m3的大房间,其中采样率为40 kHz,计算了脉冲响应。证实了可以通过IWB方案来计算具有自然混响的三维声场。

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  • 来源
    《Japanese journal of applied physics》 |2013年第7issue2期|07HC11.1-07HC11.7|共7页
  • 作者单位

    Department of Information Systems Design, Doshisha University, Kyotanabe, Kyoto 610-0321, Japan;

    Department of Information Systems Design, Doshisha University, Kyotanabe, Kyoto 610-0321, Japan;

    Division of Information and Communication Systems, Tokyo Metropolitan University, Hino, Tokyo 191-0065, Japan;

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