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Tire and Engine Sources Contribution to Vehicle Interior Noise and Vibration Exposure Levels

机译:轮胎和发动机源对车辆内部噪声和振动暴露水平的影响

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摘要

The main objective of the research presented in this paper is to enhance driver-passengers comfort of a vehicle that in turn leads to better vehicle safety and stability. The focus was put on studying the interior vibration and noise contributions originated from tire-road and engine-transmission subsystems, due to their significant impact on the dynamic performance of the vehicle. The noise and vibration measurements were recorded at the driver's head position and on the driver legs room. Furthermore, the influence of different tire types and road surface textures on the vehicle interior noise and vibration were considered. The results indicate that the widely used conventional engine mounts and tires in commercial vehicles cannot fulfill the conflicting requirements for the best isolation concerning both road surface and engine-transmission induced excitations. The values of driver's head position sound pressure level and floor vibration acceleration broadband averages originate for engine-transmission are lower than that for tire-road interaction. Furthermore, the values of RMS, crest factor, kurtosis and IRI for the vehicle waveform were estimated for vehicle speeds, tire types and road surface textures. Moreover, the percentage contribution for both interior noise and vibration originated from tire-road interaction is higher than the one from vehicle engine-transmission system in all the vehicle speed range, tire type and road surface texture considered.
机译:本文提出的研究的主要目的是提高车辆驾驶员和乘客的舒适度,从而提高车辆的安全性和稳定性。由于轮胎和发动机传输子系统对车辆的动态性能有重大影响,因此研究重点是研究源自轮胎-道路和发动机传动子系统的内部振动和噪声影响。噪声和振动测量值记录在驾驶员头部位置和驾驶员腿部空间。此外,考虑了不同轮胎类型和路面纹理对车辆内部噪声和振动的影响。结果表明,商用车辆中广泛使用的常规发动机支座和轮胎不能满足有关路面和发动机传动系统引起的最佳励磁的最佳隔离要求。发动机变速箱的驾驶员头部位置声压级和地板振动加速度宽带平均值的值低于轮胎-道路相互作用的值。此外,针对车辆速度,轮胎类型和路面纹理,估计了车辆波形的RMS,波峰因数,峰度和IRI值。此外,在所考虑的所有车速范围,轮胎类型和路面纹理中,轮胎与道路相互作用引起的内部噪声和振动的百分比贡献均高于汽车发动机传动系统。

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