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Attempt to improve the total performance of sound field reproduction system: Integration of wave-based methods and simple reproduction method

机译:试图提高声场再现系统的总绩效:基于波的方法和简单再现方法的集成

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The sound field reproduction system can be applied to various applications. The primary objective of the system is to physically reproduce an arbitrary sound field correctly. However, physical accuracy is not the only requirement in a situation where the system is actually used. Through several applications, we assumed the following four factors as total performance; A) physical accuracy, B) robustness against disturbances, C) flexibility for additional direction, and D) capability of integration with visual media. We used 24-channel narrow directional microphone array and 24-channel loudspeaker as a platform to be considered and worked to improve overall performance. As one of the reproduction methods, directional information can be easily reproduced by amplitude panning which relies on the directivity of the microphone themselves, but the microphone leakage effect occurs in the low frequency. On the other hand, wave-based methods such as boundary surface control or higher-order ambisonics are effective for physical accuracy, but control of high frequency is difficult. Therefore, if wave-based method and simple reproduction method are combined, there is a possibility to reproduce a wide frequency range well. We discuss the total performance of this reproduction method through ITD/ILD measurement and visualization of a wide range of wavefront.
机译:声场再现系统可以应用于各种应用。系统的主要目标是正确地重现任意声场。但是,物理准确性不是实际使用系统的情况下的唯一要求。通过若干申请,我们假设以下四个因素作为总业绩; a)物理精度,b)对扰动的鲁棒性,c)额外方向的灵活性,以及​​D)与视觉媒体集成的能力。我们使用了24通道窄方向麦克风阵列和24通道扬声器作为待考虑的平台,并致力于提高整体性能。作为一种再现方法之一,可以通过幅度平移容易地再现定向信息,该幅度平移依赖于麦克风本身的方向性,但是在低频时发生麦克风泄漏效果。另一方面,诸如边界表面控制或高阶野蛮的基于波的方法对于物理精度是有效的,但是对高频的控制很困难。因此,如果组合了基于波的方法和简单的再现方法,则存在很好地再现宽频率范围的可能性。我们通过ITD / ILD测量和可视化的广泛波前讨论这种再现方法的总表现。

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