主办:陕西省汽车工程学会
ISSN 1671-7988  CN 61-1394/TH
创刊:1976年

汽车实用技术 ›› 2023, Vol. 48 ›› Issue (8): 107-112.DOI: 10.16638/j.cnki.1671-7988.2023.08.018

• 设计研究 • 上一篇    下一篇

车内发动机噪声主动降噪辨识方法及 DSP 实现

张程鹏,张士强,李 浩,王 石,李 允,曹蕴涛   

  1. 中国第一汽车集团有限公司
  • 出版日期:2023-04-30 发布日期:2023-04-30
  • 通讯作者: 张程鹏
  • 作者简介:张程鹏(1993—),男,硕士,工程师,研究方向为噪声主动控制,E-mail:zhangchengpeng@faw.com.cn。

Active Noise Reduction Identification Method of Engine Noise in Vehicle and DSP Implementation

ZHANG Chengpeng, ZHANG Shiqiang, LI Hao, WANG Shi, LI Yun, CAO Yuntao   

  1. China FAW Group Corporation
  • Online:2023-04-30 Published:2023-04-30
  • Contact: ZHANG Chengpeng

摘要: 车内主动降噪技术在低频噪声控制方面有较明显的优势,利用车内扬声器发出抵消声 波实现降噪。论文采用扫频的方法进行主动降噪的次级路径建模,并在某四缸发动机车型上 实现了控制器与原车线路匹配,采用原车音响搭建车内发动机主动降噪系统。采用 MATLAB 搭建仿真模型验证自适应陷波算法,推导了用于车内次级路径建模的扫频公式及辨识结果。 再从工程角度介绍控制器与整车接口的匹配方法。最后采用数字信号处理(DSP)技术进行 实车效果验证,在锁定二挡的加速工况下发动机二、四、六阶噪声降低,30~300 Hz 的声压 级 Overall(OA)值最大降低 4 dB。

关键词: 发动机;主动降噪;辨识方法;DSP 实现

Abstract: Active noise reduction technology has obvious advantages in low-frequency noise control. It uses the speakers in the car to cancel the sound waves to achieve noise reduction. In this paper, the frequency sweep method is used to carry out the calibration process of active noise reduction, and the controller and the original car line matching are realized on a four-cylinder engine model, and the original car audio is used to build the in-car engine active noise reduction system. Using MATLAB to build a simulation model to verify the adaptive notch algorithm, derive the sound transfer function formula in the car, and derive the identification results. From the engineering point of view, the matching method of the controller and the vehicle interface is introduced. Finally, digital signal processing (DSP) technology is used to verify the real vehicle effect, the second, fourth, and sixth-order noise of the engine is reduced under the acceleration condition of locking the second gear, and the sound pressure level overall (OA) value of 30~300 Hz is reduced by 4 dB at the maximum.

Key words: Engine; Active noise control; Identification method; DSP implementation