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Objective evaluation of the sweet spot size in spatial sound reproduction using elevated loudspeakers

机译:使用高架扬声器客观评估空间声音再现中的最佳听音区大小

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摘要

In a previous study, three crosstalk cancellation techniques were evaluated and compared under different conditions. Least-squares approximations in the frequency and time domain were evaluated along with a method based on minimum-phase decomposition and a frequency independent delay. In general, the least-squares methods outperformed the method based on the minimum-phase decomposition. However, the evaluation was only done for the best-case scenario, where the transfer functions used to design the filters correspond to the listener's transfer functions and his/her location and orientation relative to the loudspeakers. This paper presents a follow-up evaluation of the performance of the three inversion techniques when the above mentioned conditions are relaxed. A setup to measure the sweet spot of different loudspeaker arrangements is described. The sweet spot was measured for 21 different loudspeaker configurations, including two- and four-channel setups. Lateral and frontal displacement were measured along with head rotations. The setups were evaluated at different elevation angles. The results suggest that when the loudspeakers are placed at elevated positions, a wider effective area is obtained. Additionally, the two-channel configurations showed to be more robust to head misalignments than the four-channel configurations.
机译:在先前的研究中,评估了三种串扰消除技术,并在不同条件下进行了比较。评估了频域和时域中的最小二乘近似,以及基于最小相位分解和频率独立延迟的方法。通常,最小二乘法优于基于最小相位分解的方法。但是,仅针对最佳情况进行评估,在最佳情况下,用于设计滤波器的传递函数对应于收听者的传递函数及其相对于扬声器的位置和方向。当上述条件放松时,本文对三种反演技术的性能进行了后续评估。描述了一种用于测量不同扬声器布置的最佳听音位置的设置。对21种不同的扬声器配置(包括两声道和四声道设置)进行了最佳测量。侧向和额向位移与头部旋转一起测量。在不同的仰角下评估设置。结果表明,当扬声器放在较高的位置时,可获得较宽的有效区域。另外,与四通道配置相比,两通道配置显示出的磁头错位更坚固。

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