最新目录

汽车风洞中波束成形声源识别技术应用进展(4)

来源:测试技术学报 【在线投稿】 栏目:期刊导读 时间:2021-02-21
作者:网站采编
关键词:
摘要:(3)使用方面,测试与数据分析处理应逐渐规范化、流程化,避免使用过程的差异带来的误差。 综上所述,随着汽车行业对气动噪声开发的深入,波束成

(3)使用方面,测试与数据分析处理应逐渐规范化、流程化,避免使用过程的差异带来的误差。

综上所述,随着汽车行业对气动噪声开发的深入,波束成形声源识别作为一类较为新型且不断完善的测试技术,在整车风洞试验中拥有广阔的使用前景。

[1]HUDSON R E,YAO K,CHEN J C. Acoustic Source Localization and Beamforming:Theory and Practice[J].Eurasip Journal on Advances in Signal Processing,2003(4):359-370.

[2]SODERMAN P T,NOBLE S C. Directional Microphone Array for Acoustic Studies of Wind Tunnel Models[J].Journal of Aircraft,1975,12(3):168-173.

[3]MICHEL U. History of Acoustic Beamforming [C]//1st. Berlin Beamforming Conference,DLR,2006,

[4]GADE S,HALD J.Noise Source Identification with Increased Spatial Resolution Used in Automotive Industry[J]. The Journal of the Acoustical Society of America,2012,131(4):3220.

[5]NEUGEBAUER S,R?SEL R,D?BLER D. Correlation of Parallel Car Interior and Exterior Beamforming Measurements in a Wind Tunnel[C]// INTER-NOISE and NOISE-CON Congress and Conference Proceedings,2014:189-258.

[6]D?BLER D, PUHLE C, HEILMANN G. Correlation of High Channel Count Beamforming Measurement of a Car in a Wind Tunnel Using CLEAN-SC[C]// INTER-NOISE and NOISE-CON Congress and Conference Proceeding,2015,Aug. 9-12,San Francisco,California,USA.

[7]贺银芝,董国旭,张涛,等. 汽车车内噪声与车外气动声源的相关性研究[J]. 汽车工程,2017,39(10): Yinzhi,DONG Guoxu,ZHANG Tao,et al. A Study on the Correlation Between Vehicles Interior Noise and Exterior Aerodynamic Noise Sources [J]. Automotive Engineering,2017,39(10):96-101.(in Chinese)

[8]D?BLER D,OCKER J,PUHLE C.On 3D-Beamforming in the Wind Tunnel[C]// 6th Berlin Beamforming Conference,BeBeC-2016-S10,2016.

[9]MASSAROTTI M,RIBEIRO Y,CAL?ADA M. Using Spherical Beamforming to Evaluate Wind Noise Paths[C]//SAE Technical Papers,2014-36-0791,2014.

[10]HALD J. Combined NAH and Beamforming Using The Same Array[J]. B&K Technical Review, 2005, 1(1):11-39.

[11]NORDBORG A,WEDEMANN J,WILLENBRINK Array Microphone Configuration[C]// INTERNOISE and NOISE-CON Congress and Conference Proceedings,2000,August 27–30,Nice, VA:Institute of Noise Control Engineering,c2000:2318-2323.

[12]褚志刚,杨洋,蒋忠翰. 波束形成传声器阵列性能研究[J]. 传感技术学报,2011,24(5): Zhigang,YANG Yang,JIANG Zhonghan. Study on the Beamforming Performance of Microphones Array[J].Chinese Journal of Sensors and Actuators, 2011,24(5):665-670. (in Chinese)

[13]CHRISTENSEN J,HALD J. Improvement of Cross Spectral Beamforming[C]//INTER-NOISE and NOISECON Congress and Conference Proceedings,2003,Seogwipo,Korea. Reston VA:Institute of Noise Control Engineering,c2003:2652-2659.

[14]BROOKS T F,HUMPHREYS W M. A Deconvolution Approach for the Mapping of Acoustic Sources (DAMAS)Determined from Phased Microphone Arrays[J]. Journal of Sound and Vibration,2004,294(4-5):856-879.

[15]EHRENFRIED K,KOOP of Iterative Deconvolution Algorithms for the Mapping of Acoustic Sources[J]. AIAA Journal,2007,45(7):1584-1595.

[16]DOUGHERTY R P. Extensions of DAMAS and Benefits and Limitations of Deconvolution in Beamforming[C]//11th AIAA/CEAS Aeroacoustics Conference,2005,May 23-25,Monterey,California. AIAA-2005-2961,c2005:2036-2048.

[17]BROOKS T F,HUMPHREYS W M. Extension of DAMAS Phased Array Processing for Spatial Coherence Determination(DAMAS-C)[C]//12th AIAA/CEAS Aeroacoustics Conference,2006,May 8-10,Cambridge,Massachusetts. AIAA-2006-2654,c2006:3337-3354.

[18]SCHWARZ U J. Mathematical-statistical Description of the Iterative Beam Removing Technique (Method CLEAN)[J]. Astronomy and Astrophysics,1978,65:345-356.

[19]SIJTSMA P. CLEAN Based on Spatial Source Coherence[J]. International Journal of Aeroacoustics,2007,6(4):357-374.

[20]DOUGHERTY R P. Functional Beamforming[C]// 5th Berlin Beamforming Conference,Bellevue,USA,2014.

[21]YARDIBI T,LI Jian,STOICA P,et al. Sparsity Constrained Deconvolution Approaches for Acoustic Source Mapping [J]. Journal of the Acoustical Society of America,2008,123(5):2631-42.

[22]沈哲,王毅刚,杨志刚,等. 基于剪切层扇形分层模型的射流声传播分析[J]. 同济大学学报(自然科学版),

2017,45(4): Zhe,WANG Yigang,YANG Zhigang,et Propagation Analysis of Jet Flow Based on Stratified Fan-Shaped Shear Layer Model[J]. Journal of Tongji University(Natural Science),2017,45(4):596-601.(in Chinese)

[23]AMIET R of Open Jet Wind Tunnel Measurements for Shear Layer Refraction[C]//AIAA Conference on the Exploration of the Outer Planets, 1975.

[24]SARRADJ E. A Fast Ray Casting Method for Sound Refraction at Shear Layers[C]// 22nd AIAA/CEAS Aeroacoustics Conference, Lyon, France,2016.

文章来源:《测试技术学报》 网址: http://www.csjsxbzz.cn/qikandaodu/2021/0221/505.html



上一篇:Urea-SCR 后处理系统测试技术研究现状
下一篇:一种基于和改进的码率控制算法

测试技术学报投稿 | 测试技术学报编辑部| 测试技术学报版面费 | 测试技术学报论文发表 | 测试技术学报最新目录
Copyright © 2019 《测试技术学报》杂志社 版权所有
投稿电话: 投稿邮箱: