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Source excitation strategies for obtaining impulse responses in finite difference time domain room acoustics simulation

机译:在时域有限差分时域声学模拟中获得脉冲响应的源激励策略

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摘要

This paper considers source excitation strategies in finite difference time domain room acoustics simulations for auralization purposes. We demonstrate that FDTD simulations can be conducted to obtain impulse responses based on unit impulse excitation, this being the shortest, simplest and most efficiently implemented signal that might be applied. Single, rather than double, precision accuracy simulations might be implemented where memory use is critical but the consequence is a remarkably increased noise floor. Hard source excitation introduces a discontinuity in the simulated acoustic field resulting in a shift of resonant modes from expected values. Additive sources do not introduce such discontinuities, but instead result in a broadband offset across the frequency spectrum. Transparent sources address both of these issues and with unit impulse excitation the calculation of the compensation filters required to implement transparency is also simplified. However, both transparent and additive source excitation demonstrate solution growth problems for a bounded space. Any of these approaches might be used if the consequences are understood and compensated for, however, for room acoustics simulation the hard source is the least favorable due to the fundamental changes it imparts on the underlying geometry. These methods are further tested through the implementation of a directional sound source based on multiple omnidirectional point sources.
机译:本文考虑了在时域有限差分时域声学模拟中的源激励策略,以达到听觉化的目的。我们证明可以进行FDTD仿真以获得基于单位脉冲激励的脉冲响应,这是可能应用的最短,最简单和最有效的实现信号。在内存使用至关重要的情况下,可能会执行单次而不是两次精度精度模拟,但结果是本底噪声显着增加。硬源激发会在模拟声场中引入不连续性,从而导致谐振模式与预期值发生偏移。加性信号源不会引入这种不连续性,而是会导致整个频谱的宽带偏移。透明源解决了这两个问题,并且借助单位脉冲激励,还简化了实现透明所需的补偿滤波器的计算。但是,透明和附加源激发都证明了有限空间的溶液增长问题。如果可以理解和补偿后果,则可以使用这些方法中的任何一种,但是,对于室内声学模拟,硬声源是最不利的,这是因为硬声源会给基础几何结构带来根本性的变化。通过基于多个全向点源的定向声源的实现,进一步测试了这些方法。

著录项

  • 来源
    《Applied Acoustics》 |2014年第8期|6-14|共9页
  • 作者单位

    AudioLab, Department of Electronics, University of York, York, UK;

    Department of Media Technology, Aalto University School of Science, Espoo, Finland;

    Department of Media Technology, Aalto University School of Science, Espoo, Finland;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Room acoustic simulation; Finite difference scheme;

    机译:室内声学模拟;有限差分方案;

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