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首页> 外文期刊>Japanese journal of applied physics >Moving sound source with an arbitrary trajectory in the two-dimensional finite-difference time-domain method
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Moving sound source with an arbitrary trajectory in the two-dimensional finite-difference time-domain method

机译:在二维有限差分时间域方法中移动声源,任意轨迹

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In this paper, a moving sound source with an arbitrary trajectory is implemented using the finite-difference time-domain (FDTD) method. Two methods are proposed for implementing a moving-point sound source in the FDTD method, in which physically valid analysis is possible, including that of the Doppler effect. One method is the direct method and the other is the convolution method. We produce formulations and perform numerical experiments for a two-dimensional sound field, and the accuracies of the two proposed methods are compared. It is confirmed that both methods can be applied to a moving sound source, including the Doppler effect, and that the two methods have almost the same accuracy. It is found that the convolution method has advantages in that the source waveform and speed of movement can be freely changed at the time of convolution.
机译:在本文中,使用有限差分时间域(FDTD)方法来实现具有任意轨迹的移动声源。 提出了两种方法,用于在FDTD方法中实现移动点声源,其中可以进行物理有效的分析,包括多普勒效应。 一种方法是直接方法,另一个方法是卷积方法。 我们生产制剂并对二维声场进行数值实验,比较两个提出的方法的精度。 确认两种方法都可以应用于移动声源,包括多普勒效应,并且两种方法具有几乎相同的精度。 结果发现,卷积方法具有优势,因为在卷积时可以自由地改变源波形和运动速度。

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