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Analysis and Optimization of Low-Speed Road Noise in Electric Vehicles

机译:电动汽车低速道路噪声的分析与优化

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When a certain electric vehicle is driving at a constant speed of 40?km/h on the rough asphalt road, the rear passenger can obviously feel the ear pressure, which seriously affects the comfort. Through the analysis of objective data, it was found that the problem was caused by the road excitation, which leads to the coupling between the mode of the backup door and the mode of the acoustic cavity, and causes the resonance of the car cavity, thus causing the ear pressure sensation. To solve this problem, this paper optimizes the backup door by means of experiment and simulation, increases the dynamic vibration absorber, makes its modal frequency avoid the acoustic cavity modal frequency, and achieves the purpose of reducing the interior noise. After optimization, the vehicle noise is reduced by 8?dBA at 42?Hz under 40?km/h working condition of rough road surface, and the ear pressure sensation is reduced at the same time, thus improving the NVH (noise, vibration, and harshness) performance of the vehicle.
机译:当某个电动车辆在粗糙的沥青路上以40克/小时的恒定速度行驶时,后乘客可以显然感受到耳压,这严重影响了舒适性。通过对客观数据的分析,发现该问题是由道路激发引起的,这导致备用门的模式与声腔的模式之间的耦合,并导致车腔的共振,从而导致车腔的共振导致耳压感。为了解决这个问题,本文通过实验和仿真优化了备用门,增加了动态振动吸收器,使其模态频率避免了声学腔模频,并实现了减少内部噪声的目的。优化后,车辆噪声减少了8°DBA,42℃下的40克/小时的粗糙路面工作条件下降,耳压感觉同时降低,从而改善NVH(噪音,振动,振动,和严格的车辆性能。

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