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窄带主动噪声控制中频率不匹配应对方法实时仿真

Real-time Simulation for Methods of Accommodating Frequency Mismatch in Narrowband Active Noise Control
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摘要 非声学传感器的使用致使前馈窄带主动噪声控制(ANC)系统中往往存在频率不匹配(FM)。利用MATLAB/Simulink实时仿真功能,构建了针对前馈窄带ANC系统中FM应对方法的实时仿真平台。对一种改进的FM应对方法进行了深入的实时仿真研究,与传统的FM应对方法进行了比较,对其性能进行评估。仿真结果与分析表明,与传统FM应对方法相比,新方法能够应对较大的非平稳FM量,且具有较快的收敛速度。 Frequency mismatch(FM) generally presents in feedforward narrowband active noise control(ANC)system due to the application of non-acoustic sensor.Based on the real-time simulation function of MATLAB / Simulink,a real-time simulation platform was constructed for methods of accommodating FM in feedforward narrowband ANC system.A new proposed FM accommodating method is illustrated and studied through real-time simulations in deep,and also its performance is evaluated by comparing with the traditional FM accommodating approach.Simulation results show that the new system can cope with larger nonstationary FM with faster convergence rate in compare with the traditional system.
作者 毛梦菲 刘剑
出处 《科学技术与工程》 北大核心 2016年第27期38-44,共7页 Science Technology and Engineering
基金 国家自然科学基金项目(61201364) 中央高校基本科研业务费专项资金(NS2016034)资助
关键词 窄带主动噪声控制 频率不匹配 实时仿真 非平稳 narrowband active noise control frequency mismatch real-time simulation nonstationary
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参考文献10

  • 1Xiao Y, Tadokoro Y, Shida K. Adaptive algorithm based on least mean p-power error criterion for Fourier analysis in additive noise. IEEE Transactions on Signal Processing, 1999 ;47 (4) : 1172-1181.
  • 2Xiao Y, Ma L. Hasegawa K. Properties of FXI,MS-based narrowband active noise control with online seeondary-pathmodeling. IEEE Trans- aclions on Signal Proeessing, 2009; 57(8): 2931-2949.
  • 3Xiao Y,Ikuta A, Ma L, et al. Statistical properties of LMS Fourier analyzer in the presence of frequency mismatch. IEEE Transactions on Circuits and Systems 1: Regular Papers, 2004; 51 (12): 2504-2515.
  • 4Jeon H J, Chang T G, Kuo S M. Analysis of frequency mismatch in narrowband active noise control. IEEE Transactions on Audio, Speech, and Languge Processing, 2010 ; 18 ( 6 ) : 1632-1642.
  • 5黄博妍,常琳,马亚平,孙金玮,魏国.一种应对非平稳频率失调的窄带主动噪声控制系统[J].自动化学报,2015,41(1):186-193. 被引量:12
  • 6Huang B, Xiao Y, Sun J, et al. A variable step-size FXLMS algo- rithm for narrowband active noisecontrol. IEEE Transactions on Audi- o, Speech, and Language Processing, 2013; 21(2) : 301-312.
  • 7Kuo S M, Puvvala A B. Effects of frequency separation in periodic active noise control systems. IEEE Trans Audio, Speech, and Lan- guage Processing,2006 ; 14(5 ) : 1857-1866.
  • 8Xiao Y, Ma L, Khorasani K, et aL A new robust narrowband active noise control system in the presence of frequency mismatch. IEEETrans Audio, Speech, and Language Processing, 2006; 14 ( 6 ) 2189-2200.
  • 9Xiao Y, Ma L, Ward R, et al. Fast RLS Fourier analyzers capable of accommodating frequency mismatch. Signal Processing, 2007; 87 (4) : 2197-2212.
  • 10夏国芳,刘剑.一种应对窄带主动噪声控制中频率不匹配的方法[J].噪声与振动控制,2016,36(1):26-31. 被引量:3

二级参考文献19

  • 1胡佳杰,左曙光,何吕昌,张孟浩.燃料电池汽车空辅系统噪声有源控制技术[J].噪声与振动控制,2013,33(1):83-89. 被引量:2
  • 2Xiao Y, Tadokoro Y, Shida K. Adaptive algorithm based onleast mean p-power error criterion for Fourier analysis inadditive noise[J]. IEEE Transactions on SignalProcessing, 1999, 47(4): 1172-1181.
  • 3Xiao Y, Ikuta A, Ma L, et al. Stochastic analysis of theFXLMS-based narrowband active noise control system[J].IEEE Transactions on Audio, Speech, and LanguageProcessing, 2008, 16(5): 1000-1014.
  • 4Wang L, Gan W S. Convergence analysis of narrowbandactive noise equalizer system under imperfect secondarypath estimation[J]. IEEE Transactions on Audio,Speech, and Language Processing, 2009, 17(4): 566-571.
  • 5Bodson M, Douglas S C. Adaptive algorithms for therejection of sinusoidal disturbances with unknownfrequency[J]. Automatica, 1997, 33(12): 2213-2221.
  • 6Pigg S, Bodson M. Adaptive algorithms for the rejectionof sinusoidal disturbances acting on unknown plants[J].IEEE Transactions on Control Systems Technology,2010, 18(4): 822-836.
  • 7Xiao Y, Ma L, Khorasani K. A robust narrowband activenoise control system for accomodating frequencymismatch[M]. na, 2004.
  • 8Jeon H J, Chang T G, Kuo S M. Analysis of frequencymismatch in narrowband active noise control[J]. IEEETransactions on Audio, Speech, and LanguageProcessing, 2010, 18(6): 1632-1642.
  • 9Xiao Y, Ma L, Khorasani K, et al. A new robustnarrowband active noise control system in the presence offrequency mismatch[J]. IEEE Transactions on Audio,Speech, and Language Processing, 2006, 14(6): 2189-2200.
  • 10Sakai H, Hinamoto Y. An exact analysis of the LMSalgorithm with tonal reference signals in the presence offrequency mismatch[J]. Signal Processing, 2005, 85(6):1255-1262.

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