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Simulation of an input shaping scheme technique to investigate unwanted noise and vibration in wiper blade

机译:模拟输入整形方案技术以研究雨刮器中的有害噪声和振动

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摘要

Wiper system in automobile has a potential to generate noises. These noises can be categories into three types namely squeal, chattering and reversal noise. The squeal noise or squeaky noise appears at frequency 1000 Hz, the chattering noise appears at frequency 100 Hz and lastly is the reversal noise appears at 500 Hz. These noises lead to poor visibility and annoying sound to the driver and passengers, respectively. This paper describes a control technique that it is capable to reduce the unwanted noise and vibration level in automobile windshield wiper system. In this research, the derivation of two dimensional mathematical model of wiper system is produced using Newtonian approach and MATLAB/Simulink is used to simulate and analyze the vibration response of the wiper system in time domain and frequency domain. In this simulation, an input shaping scheme has been introduced as the control strategy. The simulation result has been verified by comparing with the result obtained using numerical approach analysis. The result shows that input shaping technique can reduce the vibration level to 25 to 30 percents compare the model with conventional scheme.
机译:汽车中的刮水器系统可能会产生噪音。这些噪声可以分为三类,即尖叫声,颤动声和反转噪声。尖叫声或吱吱声出现在频率为1000 Hz处,颤动噪声出现在频率为100 Hz处,最后是反转噪声出现在500 Hz处。这些噪声分别导致驾驶员和乘客的能见度差和令人讨厌的声音。本文介绍了一种控制技术,该技术能够降低汽车挡风玻璃刮水器系统中的有害噪声和振动水平。在这项研究中,使用牛顿方法产生了雨刮器系统的二维数学模型,并使用MATLAB / Simulink在时域和频域中模拟和分析了雨刮器系统的振动响应。在此仿真中,已引入输入整形方案作为控制策略。通过与使用数值方法分析获得的结果进行比较,对仿真结果进行了验证。结果表明,与传统方案相比,输入整形技术可以将振动水平降低到25%至30%。

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