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一种用于评估不利条件下动态范围压缩效果的数据驱动距离度量。

A Data-driven Distance Metric for Evaluating the effects of Dynamic Range Compression in Adverse Conditions.

机构信息

Hearing Systems Section, Department of Health Technology, Technical University of Denmark, Kgs. Lyngby, Denmark.

出版信息

Trends Hear. 2023 Jan-Dec;27:23312165231192302. doi: 10.1177/23312165231192302.

Abstract

Dynamic range compression is a crucial component in hearing aids, aiming to restore audibility for hearing-impaired listeners. However, determining suitable compression parameters, such as the time constants for the level estimation stage, remains a topic of debate, as the perceptual benefit of different parameter configurations varies depending on the acoustic conditions. In this study, a data-driven distance metric based on physical metrics was developed to evaluate and compare the performance of various compression systems. This analysis encompassed fast-acting and slow-acting compression, as well as a "scene-aware" compression that dynamically adjusted the release time constant based on the presence of the target. A reference system called "source-independent compression" was also considered, which had access to individual speech and noise signals. Multiple physical metrics were employed to assess the effects of these different compression systems under diverse acoustic conditions, including varying levels of interfering noise and degrees of room reverberation. Factor analysis was applied to derive a concise set of interpretable features representing the impact of compression, expressed as linear combinations of carefully selected objective metrics. The reduced dimensional representation enabled the use of the Manhattan distance to measure the similarity between the compression systems. Results demonstrated that the scene-aware compressor generally exhibited a smaller distance to the reference system compared to both the fast-acting and slow-acting compressors. This finding suggests that an adaptive compression system holds potential benefits across a range of acoustic conditions.

摘要

动态范围压缩是助听器中的一个关键组件,旨在为听力受损的听众恢复可听度。然而,确定合适的压缩参数(例如,用于电平估计阶段的时间常数)仍然是一个争论的话题,因为不同参数配置的感知益处因声学条件而异。在这项研究中,开发了一种基于物理度量的基于数据驱动的距离度量标准,以评估和比较各种压缩系统的性能。该分析包括快速作用和缓慢作用的压缩,以及一种“场景感知”的压缩,它根据目标的存在动态调整释放时间常数。还考虑了一种称为“与源无关的压缩”的参考系统,它可以访问单个语音和噪声信号。采用了多种物理度量标准来评估这些不同的压缩系统在不同的声学条件下的效果,包括不同程度的干扰噪声和房间混响。应用因子分析得出一组简洁的可解释特征,这些特征表示压缩的影响,以精心选择的客观度量的线性组合表示。降维表示使可以使用曼哈顿距离来测量压缩系统之间的相似性。结果表明,与快速作用和缓慢作用的压缩机相比,场景感知压缩机通常与参考系统的距离更小。这一发现表明,自适应压缩系统在各种声学条件下都具有潜在的优势。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/56c7/10413902/bb66632a16e2/10.1177_23312165231192302-fig1.jpg

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