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A study on the effect of reflections and reverberation for low-channel-count Transaural systems

机译:低通道数透声系统的反射和混响效果研究

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Cross-talk cancellation allows for the reproduction of binaural audio through loudspeakers. This uses a digital signal processing network that controls the acoustic pressure at the listener's ears. Although this can be achieved by using only two drivers, loudspeaker arrays extend the operating frequency range and are more robust against mismatches between nominal and actual transducer transfer functions. This document presents a numerical study on the trade-off between cross-talk cancellation performance and the number of channels of a loudspeaker array in two practical room environments. A third order image source model is used to predict the performance of loudspeaker arrays using 2, 3, 4, 5 and 7 speakers. The simulated results show how low-order reflections and the reverberant pressure created by the loudspeaker arrays affect the cross-talk cancellation and the reproduced acoustic pressures. The results show that arrays using 5 sources or more can minimise colouration on the reproduced response and maximise the effectiveness of the cross-talk cancellation over the entire audio frequency range.
机译:串扰消除可通过扬声器再现双耳音频。它使用一个数字信号处理网络来控制收听者耳朵处的声压。尽管这可以仅使用两个驱动器来实现,但扬声器阵列扩展了工作频率范围,并且在抵抗名义和实际换能器传递函数之间的失配方面更加耐用。该文件提出了在两个实际房间环境中串扰消除性能与扬声器阵列通道数之间的权衡取舍的数值研究。三阶图像源模型用于预测使用2、3、4、5和7个扬声器的扬声器阵列的性能。仿真结果表明,扬声器阵列产生的低阶反射和混响压力如何影响串扰消除和再现的声压。结果表明,使用5个或更多信号源的阵列可以使再现的响应上的色彩最小化,并在整个音频频率范围内使串扰消除的有效性最大化。

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