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Reducing Reversal Errors in Localizing the Source of Sound in Virtual Environment without Head Tracking

机译:在不进行头部跟踪的情况下,减少在虚拟环境中本地化声源时的反向错误

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This paper presents a study about the effect of using additional audio cueing and Head-Related Transfer Function (HRTF) on human performance in sound source localization task without using head movement. The existing techniques of sound spatialization generate reversal errors. We intend to reduce these errors by introducing sensory cues based on sound effects. We conducted and experimental study to evaluate the impact of additional cues in sound source localization task. The results showed the benefit of combining the additional cues and HRTF in terms of the localization accuracy and the reduction of reversal errors. This technique allows significant reduction of reversal errors compared to the use of the HRTF separately. For instance, this technique could be used to improve audio spatial alerting, spatial tracking and target detection in simulation applications when head movement is not included.
机译:本文提出了在不使用头部移动的情况下,在声源定位任务中使用附加音频提示和与头部相关的传递函数(HRTF)对人类性能的影响的研究。声音空间化的现有技术会产生反转误差。我们打算通过引入基于声音效果的感官提示来减少这些错误。我们进行了实验研究,以评估其他提示对声源定位任务的影响。结果表明,结合更多提示和HRTF,可以提高定位精度并减少反转误差。与单独使用HRTF相比,该技术可以显着减少反转误差。例如,当不包括头部运动时,该技术可用于改善模拟应用程序中的音频空间警报,空间跟踪和目标检测。

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