首页> 外文期刊>Mechanical systems and signal processing >Spectral Analysis Methods For Vehicle Interior Vibro-acoustics Identification
【24h】

Spectral Analysis Methods For Vehicle Interior Vibro-acoustics Identification

机译:车内振动声识别的光谱分析方法

获取原文
获取原文并翻译 | 示例
           

摘要

Noise has various effects on comfort, performance and health of human. Sound are analysed by human brain based on the frequencies and amplitudes. In a dynamic system, transmission of sound and vibrations depend on frequency and direction of the input motion and characteristics of the output. It is imperative that automotive manufacturers invest a lot of effort and money to improve and enhance the vibro-acoustics performance of their products. The enhancement effort may be very difficult and time-consuming if one relies only on 'trial and error' method without prior knowledge about the sources itself. Complex noise inside a vehicle cabin originated from various sources and travel through many pathways. First stage of sound quality refinement is to find the source. It is vital for automotive engineers to identify the dominant noise sources such as engine noise, exhaust noise and noise due to vibration transmission inside of vehicle. The purpose of this paper is to find the vibro-acoustical sources of noise in a passenger vehicle compartment. The implementation of spectral analysis method is much faster than the 'trial and error' methods in which, parts should be separated to measure the transfer functions. Also by using spectral analysis method, signals can be recorded in real operational conditions which conduce to more consistent results. A multi-channel analyser is utilised to measure and record the vibro-acoustical signals. Computational algorithms are also employed to identify contribution of various sources towards the measured interior signal. These achievements can be utilised to detect, control and optimise interior noise performance of road transport vehicles.
机译:噪声对人体的舒适度,性能和健康有多种影响。人脑根据频率和振幅分析声音。在动态系统中,声音和振动的传播取决于输入运动的频率和方向以及输出的特性。汽车制造商必须投入大量的精力和金钱来改善和增强其产品的振动声学性能。如果仅依靠“尝试和错误”方法而不具有源本身的先验知识,则增强工作可能非常困难且耗时。车厢内的复杂噪声源于多种来源,并通过许多途径传播。改善音质的第一步是寻找音源。对于汽车工程师来说,至关重要的是要确定主要的噪声源,例如发动机噪声,排气噪声和由于车辆内部振动传递而产生的噪声。本文的目的是寻找乘员车厢内的振动声源。频谱分析方法的实施比“试错法”要快得多,在“试错法”中,应将零件分开以测量传递函数。同样,通过使用频谱分析方法,可以在实际操作条件下记录信号,从而获得更一致的结果。多通道分析仪用于测量和记录振动声信号。还使用计算算法来识别各种源对测量的内部信号的贡献。这些成就可用于检测,控制和优化公路运输车辆的内部噪声性能。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号