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Bio-inspired sound source localization compensated for sound diffraction by binaural head and torso

机译:受生物启发的声源定位补偿了双耳头和躯干的声音衍射

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摘要

The outer ears of most mammals are relatively large, transformable, and complicated in shape. In humans, the ears are located on opposite sides of the head. Although sound is diffracted by the outer ear, head, and body, sound diffraction has not been considered in previous biological neural approaches to sound source localization. In the present paper, the effect of sound diffraction on sound source localization is evaluated and a new method for compensating for sound diffraction in sound source localization is proposed in which a similar model to an owl's auditory system is applied to a binaural human head and torso.
机译:大多数哺乳动物的外耳相对较大,可变形且形状复杂。在人类中,耳朵位于头的相对侧。尽管声音被外耳,头和身体衍射,但是在以前的生物神经方法中,声音衍射尚未考虑到声源定位。在本文中,评估了声衍射对声源定位的影响,并提出了一种在声源定位中补偿声衍射的新方法,该方法将类似于猫头鹰听觉系统的模型应用于双耳人的头部和躯干。

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