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Comparisons between simulated and in-situ measured speech intelligibility based on (binaural) room impulse responses

机译:基于(双耳)室脉冲响应的模拟和原位测量语音清晰度的比较

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摘要

This study systematically compares acoustic simulation and in-situ measurement in terms of speech transmission index (STI), speech intelligibility scores and relationship curves when considering (binaural) room impulse response and four general room conditions, namely, an office, a laboratory, a multimedia lecture hall and a semi-anechoic chamber. The results reveal that STI can be predicted accurately by acoustic simulation (using room acoustics software ODEON) when there is a good agreement between the virtual models and the real rooms and that different reverberation time (RT) and signal-to-noise ratio (SNR) may exert less significant influence on the simulated STI. However, subjective intelligibility may be overestimated when using acoustic simulation due to the head-related transfer function (HRTF) filter used, and the score bias may be minimal and difficult to detect in everyday situations. There is no obvious score tendency caused by different RT, though with the decrease in the SNR, score bias may increase. Overall, considering that the accurate acoustic modelling of rooms is often problematic, it is difficult to obtain accurate speech intelligibility prediction results using a simulation technique, especially when the room has not yet been built.
机译:这项研究在考虑(双耳)房间冲动响应和四个一般房间条件(即办公室,实验室,办公室)时,系统地比较了声学模拟和现场测量的语音传输指数(STI),语音清晰度得分和关系曲线。多媒体演讲厅和一个半消声室。结果表明,当虚拟模型与真实房间之间具有良好的一致性,并且混响时间(RT)和信噪比(SNR)不同时,可以通过声学模拟(使用房间声学软件ODEON)准确预测STI。 )可能对模拟STI的影响较小。但是,由于使用了与头部相关的传递函数(HRTF)滤波器,使用声学模拟时,主观清晰度可能会被高估,并且得分偏差可能很小,并且在日常情况下很难检测到。尽管随着SNR的降低,得分偏差可能会增加,但没有由不同RT引起的明显得分趋势。总体而言,考虑到房间的准确声学建模通常会出现问题,因此使用模拟技术很难获得准确的语音清晰度预测结果,尤其是在尚未建立房间的情况下。

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