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Perception of Diesel Engine Gear Rattle Noise

机译:对柴油机齿轮响噪声的感知

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Component sound quality is an important factor in the design of competitive diesel engines. One component noise that causes complaints is the gear rattle that originates in the front-of-engine gear train which drives the fuel pump and other accessories. The rattle is caused by repeated tooth impacts resulting from fluctuations in differential torsional acceleration of the driving gears. These impacts generate a broadband, impulsive noise that is often perceived as annoying. In most previous work, the overall sound quality of diesel engines has been considered without specifically focusing on predicting the perception of gear rattle. Gear rattle level has been quantified based on angular acceleration measurements, but those measurements can be difficult to perform. Here, the emphasis was on developing a metric based on subjective testing of the perception of gear rattle. In the first part of the present work, a method to simulate gear rattle noise and incorporate it into a no-gear-rattle (baseline) recording was developed. That procedure enabled controlled variation of rattle within the total engine noise signal. The simulations were then used in a psychoacoustic test that was designed to quantify detectable levels, perception of growth, and increase in annoyance due to the presence of gear rattle noise. Forty subjects participated in the threshold detection tests and a paired comparison annoyance test. The responses of people who reported having experience with diesel engines were compared to those of a more general population. The subjects with diesel engine experience were found to be better at detecting gear rattle noise and found rattle more annoying than the other subjects, particularly at high rattle levels. Current work is focused on development of metrics that accurately reflect human responses to gear rattle.
机译:组件音质是竞争性柴油发动机设计的重要因素。引起投诉的一个分量噪声是始出的齿轮拨浪鼓,其源于推动燃料泵和其他配件的发动机齿轮系。拨浪鼓是由驱动齿轮的差分扭转加速度的波动产生的反复牙齿冲击引起的。这些影响产生了宽带,脉冲噪音,通常被认为是烦人的。在最先前的工作中,柴油发动机的整体音质已经被考虑,而不专门专注于预测齿轮拨浪鼓的感知。基于角度加速度测量,齿轮拨浪鼓水平已经量化,但是这些测量可能难以执行。在这里,重点是基于对齿轮拨浪鼓感知的主观测试开发度量。在本作工作的第一部分中,开发了一种模拟齿轮响噪声并将其整合到无齿轮拨浪鼓(基线)记录中的方法。该过程使得在总发动机噪声信号中使得频率的受控变化。然后使用模拟在精神声学测试中,旨在量化可检测的水平,增长感知,并且由于齿轮响噪声而导致的烦恼增加。四十个科目参与了阈值检测测试和配对比较令人烦恼测试。将报告与柴油发动机经验的人的回应与更普通人口的人进行了比较。发现柴油发动机经验的主题在检测齿轮响噪声时更好,发现响声比其他主题更令人讨厌,特别是在高频率水平。目前的工作专注于准确反映齿轮拨浪鼓的人为响应的度量的发展。

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