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单通道最优恒模自适应干扰抑制方法

石庆研 吴仁彪 钟伦珑

石庆研, 吴仁彪, 钟伦珑. 单通道最优恒模自适应干扰抑制方法[J]. 电子与信息学报, 2011, 33(5): 1126-1130. doi: 10.3724/SP.J.1146.2010.01071
引用本文: 石庆研, 吴仁彪, 钟伦珑. 单通道最优恒模自适应干扰抑制方法[J]. 电子与信息学报, 2011, 33(5): 1126-1130. doi: 10.3724/SP.J.1146.2010.01071
Shi Qing-Yan, Wu Ren-Biao, Zhong Lun-Long. Adaptive Interference Suppression Based on Single-channel Optimal Constant Modulus Algorithm[J]. Journal of Electronics & Information Technology, 2011, 33(5): 1126-1130. doi: 10.3724/SP.J.1146.2010.01071
Citation: Shi Qing-Yan, Wu Ren-Biao, Zhong Lun-Long. Adaptive Interference Suppression Based on Single-channel Optimal Constant Modulus Algorithm[J]. Journal of Electronics & Information Technology, 2011, 33(5): 1126-1130. doi: 10.3724/SP.J.1146.2010.01071

单通道最优恒模自适应干扰抑制方法

doi: 10.3724/SP.J.1146.2010.01071
基金项目: 

国家科技支撑计划重大项目(2011BAH24B00),天津市科技支撑计划重点项目(10ZCKFGX04000)和民航局科技基金(MY0517409)资助课题

Adaptive Interference Suppression Based on Single-channel Optimal Constant Modulus Algorithm

  • 摘要: 针对民航地空通信中常见干扰具有恒定包络的特点,该文提出了一种基于单通道最优恒模算法的自适应干扰抑制方法。该方法利用干扰信号的恒模特性,采用非线性最小二乘的方法对干扰信号的幅度与相位进行估计,并将其与接收到的混合信号相减,从而实现了恒模干扰信号的抑制。该方法与现有民航地空通信系统具有较好的兼容性,无需额外增加通道,且避免了一般自适应干扰抑制算法中的收敛问题。仿真和实测数据的处理结果表明该方法具有较好的干扰抑制效果。
  • 任超, 吴嗣亮,王菊, 李加琪. 基于空时处理的稳健自适应波束形成算法[J]. 电子与信息学报, 2009, 31(6): 1381-1385.Ren Chao, Wu Si-liang, Wang Ju, and Li Jia-qi. A robust adaptive beamforming algorithm based on space-time processing[J]. Journal of Electronics Information Technology, 2009, 31(6): 1381-1385.[2] 郭庆华, 廖桂生. 一种稳健的自适应波束形成器[J]. 电子与信息学报, 2000, 26(1): 146-150.Guo Qing-hua and Liao Gui-sheng. A robust adaptive beamformer[J]. Journal of Electronics Information Technology, 2000, 26(1): 146-150.[3] 吴仁彪, 马健丽, 等. 基于恒模阵列的民航地空通信自适应干扰抑制方法及系统[P]. 中国, ZL 200710057268.9, 2010.Wu Ren-biao and Ma Jian-li, et al.An adaptive interference suppress method and system for air-to-ground communication in civil aviation based on constant modulus array[P]. China, ZL 200710057268.9, 2010.[4] Gooch R P and Lundell J D. The CM array: an adaptive beamformer for constant modulus signals[C]. IEEE International Conference on Acoustics, Speech, and Signal Processing, Tokyo, Japan, April 7-11, 1986: 2523-2526. [5] Johnson R Jr, Schniter P, Endres T J, Behm J D, Brown D R, and Casas R A. Blind equalization using the constant modulus criterion: a review[J]. Proceedings of the IEEE, 1998, 86(10): 1927-1950.[6] Song Xin, Wang Jin-kuan, Wang Bin, and Han Ying-hua. Robust LSCMA under quadratic constraint[C]. Proceedings of the 2010 IEEE International Conference on Automation and Logistics, Hong Kong and Macau, August 16-20, 2010: 464-467.[7] Chen Y X, Le-Ngoc T, Champagne B, and Xu C J. Recursive least squares constant modulus algorithm for blind adaptive array[J]. IEEE Transactions on Signal Processing, 2004, 52(5): 1452-1456.[8] 孟艳, 汪晋宽, 朱俊. 基于子空间的线性约束最小二乘恒模算法[J]. 电子与信息学报, 2009, 31(1): 49-52.Meng Yan, Wang Jin-kuan, and Zhu Jun. A linearly constrained LSCM algorithm based on subspace[J]. Journal of Electronics Information Technology, 2009, 31(1): 49-52.[9] Lundell J D and Widow B. Applications of the constant modulus adaptive beamformer to constant and non-constant modulus signals[C]. Twenty-First Asilomar Conference on Signals, Systems, and Computer, Pacific Grove, CA, 1987: 432-436.[10] Miranda M D, Silva M T M, and Nascimento V H. Avoiding divergence in the constant modulus algorithm[C]. IEEE International Conference on Acoustics, Speech, and Signal Processing, Las Vegas, Nevada, USA, March 30-April 4, 2008: 3565-3568.[11] Oppenheim A V, Schafer R W, and Buck J R. Discrete-Time Signal Processing (2nd edition) [M]. New Jersey: Prentice Hall, 1989: 585-587.[12] Stoica P and Moses R. Spectral Analysis of Signals[M]. New Jersey: Prentice Hall, 2005: 300-302.
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出版历程
  • 收稿日期:  2010-10-09
  • 修回日期:  2010-12-23
  • 刊出日期:  2011-05-19

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