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BINAURAL DISTANCE PERCEPTION BASED ON DIRECT-TO-REVERBERANT ENERGY RATIO

机译:基于直接到混响能量比的双耳距离感知

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The direct-to-reverberant energy ratio has long been recognized as an absolute auditory cue for sound source distance perception in listeners. Traditional methods to extract this energy ratio are based on post-processing of the estimated room impulse response, which is computationally expensive and inaccurate in practice. An alternative is based on estimating the energy arriving from the azimuth of the direct source, under the assumption that reverberant components result in a spatially-diffuse sound field. We propose a binaural equalization-cancellation technique to calculate this energy ratio by locating the source in a delay-line structure, and go on to demonstrate its potential as a distance cue for both simulated and real data. The system is integrated with a Bayesian inference framework, particle filtering, to handle the nonstationary of energy-based measurements. Experiments on simulated room data showed the resulting computational model is capable of estimating source distance based on reverberation information.
机译:直到混响的能量比长期被认为是听众中声音源距离感知的绝对听觉线索。提取这种能量比的传统方法基于估计的房间脉冲响应的后处理,这在实践中是计算昂贵和不准确的。替代方案基于估计从直接源的方位角到达的能量,在混响组件导致空间漫射声场的假设下。我们提出了一种双耳均衡消除技术来通过在延迟线结构中定位源来计算这种能量比,并继续展示其作为模拟和实际数据的距离提示的潜力。该系统与贝叶斯推理框架,粒子过滤集成,以处理基于能量的测量的非标准。模拟房间数据的实验显示,得到的计算模型能够基于混响信息估计源距离。

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