期刊文献+

基于NFxPEM算法的调制气流声源的非线性补偿 被引量:1

Non-linearity compensation of air-modulated speaker based on the nonlinear filtered-x PEM algorithm
在线阅读 下载PDF
导出
摘要 针对调制气流声源存在较强的谐波畸变,将声源系统等效为Hammerstein非线性模型,利用该模型下的预失真技术对声源进行非线性补偿研究。根据辨识的Hammerstein模型中静态非线性部分带有直流分量的特点,给出了考虑直流分量补偿的预失真算法,并用数值仿真验证了算法的准确性和直流分量补偿的必要性。在非线性补偿实验中,根据单频信号辨识得到Hammerstein模型参数,采用NFxPEM算法求得对应的预失真Wiener模型参数和预失真波形。实验结果表明,与直接发射相比,补偿发射后声波的功率谱中谐波能量有所下降,而基频能量有小幅度的上升,说明了研究思路的正确性。 Aimed at the harmonic distortion problem in the air-modulated speaker( AMS), the AMS behavioral model was represented by a Hammerstein structure, and the research on predistortion of AMS based on this model was made. As the DC offset exists in the nonlinearity of the Hammerstein model, a predistortion algorithm considering the DC offset compensation was developed. The validity of the algorithm and ttle necessity of the DC offset compensation were verified by computer simulation. In the experiment, a single sinusoidal excitation signal was first used to identify the Hammerstein model. Then, using the identified system parameters, the NFxPEM algorithm was performed to obtain the parameters of Wiener predistorter and to predistort the excitation signal. From the experiment results, it is found that our approach is effective in reducing the harmonic power with a relatively small upgrade in the fundamental frequency power.
出处 《国防科技大学学报》 EI CAS CSCD 北大核心 2013年第6期126-131,共6页 Journal of National University of Defense Technology
基金 国家自然科学基金资助项目(11274387)
关键词 调制气流声源 HAMMERSTEIN模型 NFxPEM算法 非线性补偿 air-modulated speaker Hammerstein model nonlinear fihered-x PEM algorithm nonlinearity compensation
  • 相关文献

参考文献15

  • 1Blondel L A,Elliott S J. Electropneumatic transducers as secondary actuators for active noise control[J].{H}Journal of Sound and Vibration,1999,(3):405-481.
  • 2Glendinning A G,Nelson P A,Elliott S J. Experiments on a compressed air loudspeaker[J].{H}Journal of Sound and Vibration,1990,(3):479-491.
  • 3Frederic G P. An experimental and theretical study of high-intensity.high efficiency sirens[D].CentralCounty:The Pennsylvania State University,1987.
  • 4赵云,曾新吾.调制气流声源气声转换过程模型研究[J].声学学报,2011,36(3):291-300. 被引量:4
  • 5周泽民,曾新吾,龚昌超,赵云,田章福.大功率调制气流声源阵列的相干合成实验研究[J].物理学报,2013,62(13):326-334. 被引量:2
  • 6Frank W. An efficient approximation to the quadratic volterra filter and its application in real-time loudspeaker lineariztion[J].{H}SIGNAL PROCESSING,1995.97-113.
  • 7Tsujikawa M,Shiozaki T,Kajikawa Y. Identification and elimination of second order nonlinear distortion of loudspeaker systems using volterra filter[A].2000.249-252.
  • 8Schetzen M. The volterra and Wiener theories of non-linear systems[M].{H}New York:John Wiley and Sons,Inc,1980.
  • 9Vandersteen G,Rolain Y,Schoukens J. Non-parametric estimation of the frequency response functions of the linear blocks of a Wiener-Hammerstein model[J].{H}AUTOMATICA,1997,(7):1351-1355.
  • 10Abd-Elrady E,Gan L,Kubin G. Predistortion of Hammerstein and Wiener systems using the nonlinear filtered-x prediction error method algorithm[J].Elektrotechnik&Informationstechnik,2010,(10):285-290.

二级参考文献32

  • 1白春华,吴建星.气动阀门发声器特性分析[J].北京理工大学学报,2006,26(8):677-680. 被引量:6
  • 2Shieh C M. Parallel numerical simulations of subsonic turbulent, flow-induced noise from two- and three-dimensional cavities using computational aeroacoustics. The Pennsylvania State University, 2000.
  • 3Ganesh Raman, Michael Hailye, Rice E J. The flip flop nozzle extended to supersonic flows. AIAA Journal, 1992; 31(6): 1028--1035.
  • 4Glendinning A G, Nelson P A, Elliott S J. Experiments on a compressed air loudspeaker. Journal of Sound and Vibration, 1990; 138(3): 479--491.
  • 5Roland Gunter Berndt. Actuation for rotating stall control of high speed axial compressors. Massachusetts Institute of Technolody, 1995.
  • 6Frederic Ghislain Pla. An experimental and theretical study of high-intensity, high-efficiency sirens. The Pennsylvania State University, 1987.
  • 7Meyer W A. Theoretical analysis of the performance of an air-modulated speaker. J. Acoustic. Soc. Am., 1969; 45(4): 957 -965.
  • 8Mongeau L, Franchek N, Coker C H et al. Characteristics of a pulsating jet through a small modulated orifice, with application to voice production. J. Acoustic. Soc. Am., 1997; 102(2 Pt 1): 1121--1133.
  • 9Richard S.McGowan. Aeroacoustic approach to phonation. J. Acoustic. Soc. Am., 1988; 83(2): 696--704.
  • 10Barney A, Shadle C H, Davies P O A L. Fluid flow in a dynamic mechanical model of the vocal folds and tract. I.measurements and theory. J. Acoustic. Soc. Am., 1999; 105(1): 444 -455.

共引文献4

同被引文献8

  • 1马大猷.调制气流声源的原理.物理学报,1974,23(1):17-26.
  • 2MeyerW A.Theoreticalanalysisoftheperformanceofanair-modulatedspeaker[J].JASA,1969,45(4):957-965.
  • 3BlondelLA,ElliottSJ.Electropneumatictransducersassecondaryactuatorsforactivenoisecontrol[J].JournalofSoundandVibration,1999,219(3):405-481.
  • 4GlendinningAG,NelsonPA,WlliottSJ.Experimentsonacompressed airloudspeaker[J]. JournalofSound andVibration,1990,138(3):479-491.
  • 5FredericGP.Anexperimentalandthereticalstudyofhighintensity,highefficiencysirens[D].CentralCounty:ThePennsylvaniaStateUniversity,1987.
  • 6潘锦珊,等.气体动力学基础[M].北京:国防工业出版社,1989.146-214.
  • 7赵云,曾新吾.亚声/声速射流式调制气流声源气动模拟研究[J].声学技术,2008,27(3):293-299. 被引量:8
  • 8周泽民,曾新吾,龚昌超,赵云,田章福.大功率调制气流声源阵列的相干合成实验研究[J].物理学报,2013,62(13):326-334. 被引量:2

引证文献1

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部