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A multidimensional technique for sound quality assessment

机译:声音质量评估的多维技术

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摘要

One approach to improving sound quality is to create a preference map on the basis of several acoustic parameters relevant to auditory perception. The map is derived from several stages of subjective testing, acoustic analysis, and auditory modeling. The multidimensional scaling technique CLASCAL reveals common perceptual dimensions shared by sets of sounds samples, perceptual features specific to each sound, and the different subject classes among listeners. The listeners are asked to judge the degree of dissimilarity of all pairs of sounds on a continuous scale. The analysis gives a perceptual spatial representation of the sounds. From this analysis, acoustic and auditory modelling analyses can be performed to determine the stimulus parameters that are strongly correlated with different perceptual dimensions and, where possible, with the specific features. The next stage in the analysis involves determining the probability of one sound being preferred to another. An analysis of the data allows a projection of the structure of listeners' preferences onto the physical parameter space underlying the previously determined multidimensional perceptual space. In many cases, it is found that the physical parameters having the most effect on the listeners' preferences are dependent on the set of stimuli being compared. Furthermore, when one stimulus parameter is kept constant across trials, this may alter the effects of other parameters on the listeners' preferences. Therefore context effects must be taken into account in multidimensional sound quality analysis, particularly since the qualitative aspects of most sounds are clearly multidimensional. [References: 6]
机译:一种改善声音质量的方法是基于与听觉相关的几个声学参数来创建偏好图。该地图是从主观测试,声学分析和听觉建模的多个阶段得出的。多维缩放技术CLASCAL揭示了声音样本集共有的共同感知维度,每种声音特有的感知特征以及听众之间不同的主题类别。要求听众以连续的尺度判断所有声音对的不相似程度。分析给出了声音的感知空间表示。通过此分析,可以执行声学和听觉建模分析,以确定与不同的感知维度以及在可能的情况下与特定功能密切相关的刺激参数。分析的下一阶段涉及确定一种声音被另一种声音偏爱的可能性。对数据的分析允许将听众的偏好结构投影到预先确定的多维感知空间下面的物理参数空间上。在许多情况下,发现对听者的偏好影响最大的物理参数取决于所比较的刺激的集合。此外,当一个刺激参数在整个试验中保持恒定时,这可能会改变其他参数对听众偏好的影响。因此,在多维声音质量分析中必须考虑上下文的​​影响,尤其是因为大多数声音的质素方面显然是多维的。 [参考:6]

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