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Improvement of the Acoustics under the Balcony in Auditoria using the Electro-Acoustic Method A Study with a Full-Scale Model

机译:使用电声方法改善Auditoria阳台下的声学效果全面模型研究

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摘要

In auditoria, the acoustical properties of audience areas located under balconies are regarded as inferior to the main area. This is caused by the reduction of direct and reflected sound energy due to the smaller open area and the reduction of diffusive energy due to the limited acoustical space. In this paper, a new electro-acoustic system is proposed to compensate for this acoustical condition. The proposed system is a non-regenerative system and consists of directional microphones, head amps, a convolver, a matrix processor, amplifiers, and ceiling loudspeakers located under the balcony. The loudspeakers, located at positions corresponding to measurement points across the balcony, recreate the reflecting sound from above the balcony area, which otherwise fail to reach to the listeners under the balcony. The authors have examined the proposed system's performance via two methods: acoustical measurement using a full-scale model and a corresponding psycho-acoustical experiment. The results showed that the energy of the reflections from above the system was the same or more than that without the balcony, and the decay curve with the system was almost the same as that without the balcony. The MUSHRA method was used in the psycho-acoustical experiment, which focused on the evaluation of apparent source width (ASW) and listener envelopment (LEV). The results of the experiment show that the system is significantly better for all tests to the use of no system and that the system is superior to a standerd PA (delay system).
机译:在观众席中,位于阳台下的听众区域的声学特性被认为低于主要区域。这是由于较小的开孔面积导致的直接声能和反射声能的减少,以及由于有限的声学空间而导致的扩散能的减少。在本文中,提出了一种新的电声系统来补偿这种声学条件。拟议的系统是非再生系统,由定向麦克风,前置放大器,卷积器,矩阵处理器,放大器和位于阳台下方的天花板扬声器组成。位于与整个阳台上的测量点相对应的位置处的扬声器从阳台区域上方再现反射声,否则反射声将无法到达阳台下的听众。作者通过两种方法检查了拟议系统的性能:使用满量程模型的声学测量和相应的心理声学实验。结果表明,系统上方反射的能量与不带阳台的反射能量相同或更多,并且带系统的衰减曲线与不带阳台的反射曲线几乎相同。 MUSHRA方法用于心理声学实验,重点是评估视在声源宽度(ASW)和听众包络(LEV)。实验结果表明,与不使用系统相比,该系统在所有测试中都明显更好,并且该系统优于标准PA(延迟系统)。

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