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Far field active noise control of a vehicle: A proof of concept study.

机译:车辆的远场有源噪声控制:概念验证研究。

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摘要

The active control of the free field noise radiated from a vehicle is demonstrated. Active noise control (ANC) has become a commercial proposition in recent years for several applications including duct noise cancellation and reducing interior car noise. Most current ANC applications use adaptive feedforward controllers that minimize the observed energy at one or more points in the noise field to be controlled. The main advantage of adaptation is the robustness of cancellation to environmental changes. Free field ANC is not as developed as the one dimensional case of ducts, or the modal control of enclosed sound fields because of the physical requirements of replicating the free field of a distributed source. Many demonstrations have attempted a quick fix with adaptive control while not adequately considering the physical acoustics. An additional difficulty in controlling the radiated field of a vehicle is that no measure of performance away from the vehicle is possible since it is assumed that a mobile vehicle source precludes error sensing microphones. In response to these problems some researchers have concentrated on reducing the noise radiated from structures by direct vibration control of the structure using an acoustic cost function. If the noise is radiated from an exhaust pipe control within the pipe can reduce radiated noise. This research concentrates on the more general approach of cancelling noise in a limited region with the use of secondary sources that are close to, but not co-located with, the primary sources. Insights are thus gained on the ANC of any distributed source where performance measurements in the region of desired cancellation are impractical. The primary source is a large land vehicle with a diesel engine. Reduction of far field engine noise directly in front of the vehicle is the chosen goal. The thesis is a proof of concept of ANC under these constraints. The physical acoustics are investigated through the use of simulations and the performance of the proposed system predicted. A simple demonstration system is implemented to investigate the principal assumption: that a fixed, feedforward controller is robust to environmental changes, since these affect both the original and cancelled sound almost equally. The prototype scheme successfully demonstrates: up to 15 dB of cancellation in a limited region, over 10 dB for a {dollar}pm{dollar}10{dollar}spcirc{dollar} arc, over 5 dB for a {dollar}pm{dollar}15{dollar}spcirc{dollar} arc. The frequency range of best cancellation is 60-140 Hz. Cancellation was shown to be robust to both atmospheric turbulence and to a change in physical location, without any changes made to the controller. The viability of a practical, non adaptive feedforward scheme for free field ANC was demonstrated.
机译:说明了主动控制从车辆发出的自由场噪声。近年来,主动噪声控制(ANC)已成为包括管道噪声消除和降低车内噪声在内的多种应用的商业提议。当前大多数ANC应用都使用自适应前馈控制器,该控制器将在要控制的噪声场中一个或多个点处观察到的能量最小化。适应的主要优点是抵消环境变化的鲁棒性。由于复制分布式源的自由场的物理要求,自由场ANC的开发不如一维导管或封闭声场的模态控制。许多演示尝试通过自适应控制快速解决问题,同时又没有充分考虑物理声学。控制车辆的辐射场的另一个困难是,无法进行远离车辆的性能测量,因为假设移动车辆源排除了误差感应麦克风。针对这些问题,一些研究人员集中于通过使用声学成本函数对结构进行直接振动控制来减少从结构辐射的噪声。如果噪声是从排气管辐射出来的,则管道内的控制装置可以降低辐射噪声。这项研究集中于通过使用与主要声源接近但不在同一位置的次要声源来消除有限区域内噪声的更通用方法。因此,可以获得对任何分布式源的ANC的洞察力,而在这种情况下,无法进行所需抵消区域内的性能测量。主要来源是带有柴油发动机的大型陆地车辆。选择的目标是直接在车辆前方降低远场引擎噪音。本文是在这些约束条件下ANC概念的证明。通过使用仿真研究了物理声学,并预测了所提议系统的性能。实施了一个简单的演示系统来研究以下主要假设:固定的前馈控制器对于环境变化具有鲁棒性,因为这些变化几乎同时影响原始声音和消除的声音。原型方案成功地证明:在有限的区域内,抵消高达15 dB,{dollar} pm {dollar} 10 {dollar} spcirc {dollar}弧超过10 dB,{dollar} pm {dollar}超过5 dB } 15 {dollar} spcirc {dollar}弧。最佳消除的频率范围是60-140 Hz。事实证明,取消对大气湍流和物理位置的变化都具有鲁棒性,而无需对控制器进行任何更改。展示了一种适用于自由场ANC的实用,非自适应前馈方案的可行性。

著录项

  • 作者

    Thomas, Marc Jason.;

  • 作者单位

    Michigan Technological University.;

  • 授予单位 Michigan Technological University.;
  • 学科 Engineering General.; Engineering Automotive.; Engineering System Science.
  • 学位 Ph.D.
  • 年度 1993
  • 页码 217 p.
  • 总页数 217
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程基础科学;自动化技术及设备;系统科学;
  • 关键词

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