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Listener-Position Adaptive Crosstalk Cancelation Using a Parameterized Superdirective Beamformer

机译:使用参数化的超导光束形成器侦听器定位自适应串扰取消

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We present a method for cancelation of the acoustic crosstalk between the ears of a listener using a linear loudspeaker array. This allows for controlling the signals that arise at listener's ear independently of each other so that binaural cues can be imposed. We employ superdirective near-field beamforming (SDB) over the vast part of the frequency range. Allowing the listener to move in front of the array requires the computation of a new SDB solution for each possible position of the listener, which is a computationally expensive procedure. We show that the beamformer weights exhibit a very smooth evolution for listening positions along a line parallel to the array. This makes it straightforward to parameterize pre-computed beamformer weights with a few parameters for each frequency. Upon realtime execution, the beamformer weights can be determined efficiently for any arbitrary position along the listener contour from the parameters with negligible error. Simulation results show that the proposed beamformer provides a higher channel separation than previously published solutions while maintaining robustness.
机译:我们使用线性扬声器阵列提出了一种用于取消听众的耳朵之间的声学​​串扰。这允许控制在听众耳朵上的彼此独立地在听众耳中产生的信号,以便可以施加双耳管制线索。我们在频率范围的大部分中使用超导近场波束成形(SDB)。允许侦听器在阵列的前面移动需要计算侦听器的每个可能位置的新SDB解决方案,这是一种计算昂贵的过程。我们表明波束形成器权重沿着与阵列平行的线路聆听位置的非常平滑的演变。这使得与每个频率的几个参数一起参数化为参数化预先计算的波束形成器权重。在实时执行时,可以从具有可忽略误差的参数有效地针对侦听器轮廓的任何任意位置来有效地确定波束形成器权重。仿真结果表明,所提出的波束形成器提供比先前发布的解决方案更高的通道分离,同时保持稳健性。

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