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Objective estimation of perceived speech quality. I. Development ofthe measuring normalizing block technique

机译:感知语音质量的客观估计。在。测量归一化块技术的发展

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Perceived speech quality is most directly measured by subjective listening tests. These tests are often slow and expensive, and numerous attempts have been made to supplement them with objective estimators of perceived speech quality. These attempts have found limited success, primarily in analog and higher-rate, error-free digital environments where speech waveforms are preserved or nearly preserved. The objective estimation of the perceived quality of highly compressed digital speech, possibly with bit errors or frame erasures has remained an open question. We report our findings regarding two essential components of objective estimators of perceived speech quality: perceptual transformations and distance measures. A perceptual transformation modifies a representation of an audio signal in a way that is approximately equivalent to the human hearing process. A distance measure reflects the magnitude of a perceived distance between two perceptually transformed signals. We then describe a new objective estimation approach that uses a simple but effective perceptual transformation and a distance measure that consists of a hierarchy of measuring normalizing blocks. Each measuring normalizing block integrates two perceptually transformed signals over some time or frequency interval to determine the average difference across that interval. This difference is then normalized out of one signal, and is further processed to generate one or more measurements
机译:感知的语音质量最直接通过主观听力测试来衡量。这些测试通常是缓慢且昂贵的,并且已经进行了许多尝试,以用感知到的语音质量的客观估计来补充它们。这些尝试取得了有限的成功,主要是在保留或几乎保留语音波形的模拟和更高速率,无错误的数字环境中。高度压缩的数字语音(可能带有误码或帧擦除)的感知质量的客观估计仍然是一个悬而未决的问题。我们报告了有关感知语音质量的客观估计量的两个基本组成部分的发现:知觉转换和距离测量。感知变换以近似等效于人类听力过程的方式来修改音频信号的表示。距离量度反映了两个经过感知转换的信号之间的感知距离的大小。然后,我们描述一种新的客观估计方法,该方法使用简单但有效的感知转换以及由测量归一化块的层次结构组成的距离度量。每个测量归一化块在某个时间或频率间隔上对两个经过感知转换的信号进行积分,以确定该间隔内的平均差。然后将此差异从一个信号中归一化,然后进一步处理以生成一个或多个测量值

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