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Performance of optimized sound field control techniques in simulated and real acoustic environments.

机译:优化的声场控制技术在模拟和真实声学环境中的性能。

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摘要

It is of interest to create regions of increased and reduced sound pressure ('sound zones') in an enclosure such that different audio programs can be simultaneously delivered over loudspeakers, thus allowing listeners sharing a space to receive independent audio without physical barriers or headphones. Where previous comparisons of sound zoning techniques exist, they have been conducted under favorable acoustic conditions, utilizing simulations based on theoretical transfer functions or anechoic measurements. Outside of these highly specified and controlled environments, real-world factors including reflections, measurement errors, matrix conditioning and practical filter design degrade the realizable performance. This study compares the performance of sound zoning techniques when applied to create two sound zones in simulated and real acoustic environments. In order to compare multiple methods in a common framework without unduly hindering performance, an optimization procedure for each method is first used to select the best loudspeaker positions in terms of robustness, efficiency and the acoustic contrast deliverable to both zones. The characteristics of each control technique are then studied, noting the contrast and the impact of acoustic conditions on performance.
机译:令人感兴趣的是,在外壳中创建增大和减小的声压区域(“声区”),以便可以通过扬声器同时传递不同的音频程序,从而使听众共享一个空间来接收独立的音频,而无需物理障碍或耳机。如果存在以前对声音分区技术的比较,它们是在有利的声学条件下进行的,利用了基于理论传递函数或无声测量的模拟。在这些高度指定和受控的环境之外,包括反射,测量误差,矩阵调节和实际滤波器设计在内的现实因素降低了可实现的性能。这项研究比较了声音分区技术在模拟和真实声学环境中创建两个声音区域时的性能。为了在不过度影响性能的情况下在一个通用框架中比较多种方法,首先针对鲁棒性,效率和可传递到两个区域的声学对比度,使用每种方法的优化程序来选择最佳扬声器位置。然后研究每种控制技术的特性,注意对比度和声学条件对性能的影响。

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