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Sound Metric Design for Evaluation of Tonal Sound in Laser Printer

机译:用于评估激光打印机中音调的声音度量设计

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摘要

The operating sounds radiated from laser printers include tonal noise components caused by rotating mechanical parts such as the gears, shaft, motor, and fan. The negative effects of tonal noise components need to be considered in the process of developing sound quality indices for the quantitative evaluation of users' emotional satisfaction in terms of psycho-acoustics. However, in a previous study, it was confirmed that Aures' tonality did not have sufficient correlation with the results of a jury evaluation. Sound quality indices based on loudness, articulation index, and fluctuation strength have problems in considering the effect of rotating mechanical parts on the sound quality. In the present study, to solve the tonality evaluation problem, the calculation algorithm based on Aures' tonality was investigated in detail to find the cause of decreasing correlation. A new tonality evaluation model was proposed by modifying and optimizing the masking effect, loudness ratio, and shape of the weighting curve based on the basic algorithm of Aures' tonality, and applied to two kinds of operating sound groups in order to verify the usefulness of the proposed model. As a result, it has been confirmed that the proposed tonality evaluation model has sufficient correlation and usefulness for expressing tonality in the operating sounds of laser printers. In the following study, these results will be used to model sound quality indices as the input data by using the classification algorithm.
机译:激光打印机发出的操作声音包括由齿轮,轴,电机和风扇等机械零件旋转引起的色调噪声分量。在开发音质指标的过程中,需要考虑音调噪声成分的负面影响,以便根据心理声学定量评估用户的情感满意度。但是,在先前的研究中,已经确认Aures的音调与陪审团评估的结果没有足够的相关性。基于响度,清晰度指数和波动强度的声音质量指标在考虑旋转机械零件对声音质量的影响时存在问题。在本研究中,为了解决音调评估问题,详细研究了基于Aures音调的计算算法,以找出相关性降低的原因。根据Aures音调的基本算法,通过修改和优化掩蔽效果,响度比和加权曲线的形状,提出了一种新的音调评估模型,并将其应用于两种操作声音组,以验证音色的有用性。建议的模型。结果,已经确认,所提出的音调评估模型对于在激光打印机的操作声音中表达音调具有足够的相关性和实用性。在以下研究中,这些结果将用于通过使用分类算法将音质指标建模为输入数据。

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