期刊文献+

有向阵元圆形阵列声纳波束形成原理及实现 被引量:3

Beam-forming principle and implementation of circular array composed of directional elements
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摘要 有向阵元阵列接收具有区域指定性好和灵敏度高的优点而被广泛应用于雷达、水声信号目标探测。探讨了基于有向阵元圆阵的波束形成原理并设计出基于FPGA的自适应数字波束形成(ADBF)模块,仿真结果表明有向阵元形成的波束图较全向阵波束图有明显改善,LMS自适应算法对干扰能有效抑制,从而提高了系统输出信号干扰噪声比(SINR)。 Due to its better regional direction and high sensitivity, the array composed of directional elements is widely used in radar and underwater sonar target detection. The beam-forming principle of the circular array composed of directional elements is studied. The design and its FPGA implementation of the adaptive beamforming are discussed in detail.Simulation results show that the beam pattern of the circular array composed of directional elements is improved in comparison with the traditional one. And the interference is effectively repressed by using the LMS adaptive algo- rithm. Thus, the signal-to-noise ratio of the system can be increased.
出处 《声学技术》 CSCD 2009年第1期73-77,共5页 Technical Acoustics
基金 十一五国防预研基金(51305050203)
关键词 圆阵列 辐射方向图 阵列波束图 最小均方算法 FPGA circular array radiation pattern array beamforming map least mean square FPGA
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参考文献8

  • 1John D. Kraus,Ronald J. Marhefka天线(第三版)[M].电子工业出版社.2004
  • 2Groen J, Beerens S P. Adaptive port-starboard beamforming of triplet sonar arrays[J]. IEEE Journal of Oceanic Engineering, 2005, 30(2).
  • 3范西昆,王永良,陈辉,李强,母其勇.并行实现空时自适应算法[J].电子学报,2005,33(12):2222-2225. 被引量:6
  • 4刘千里,苑秉成.基于DSP的声纳波束形成系统设计[J].电子器件,2006,29(3):794-797. 被引量:5
  • 5毕永年.基于FPGA的数字波束合成器设计[J].电子技术(上海),2003,30(8):56-57. 被引量:5
  • 6J Ou, VK Prasanna. Parameterized and energy efficient adaptive beamforming on fpgas using matlab/simulink[J]. Acoustics, Speech, and Signal Processing, 2004.
  • 7Paul Graham, Brent Nelson. FPGA-based sonar processing[J]. Department of Electrical and Computer Engineering. Brigham Young University, Provo, UT.
  • 8李启虎.声纳信号处理引论[M].海洋出版社,1985.

二级参考文献12

  • 1冯诺 等.超声诊断设备原理与设计[M].中国医药出版社,1993,4..
  • 2Acex1K datasheet. Altera Corporation.
  • 3王永良 彭应宁.空时自适应信号处理[M].北京:清华大学出版社,2001.46-55.
  • 4A Farina, L Timmoneri. Real-time STAP techniques[J]. Electrnics & Communication Engineering Journal, 1999,11(1) : 13- 22.
  • 5K Hwang, Z Xu, M Arakawa. Benchmark evaluation of theIBM SP2 for parallel signal processing[ J]. IEEE Tram Parallel and Distributed Systems, 1996,7 (5) : 522 - 535.
  • 6J M Lebak, A W Bojanczyk. Design and performance evaluation of a portable parallel library for space-time adaptive processing[ J ]. WEE Trans Parallel and Distributed Systems,2000,11(3) :287 - 298.
  • 7K Rajan, L M Patnik. Implementation of STAP algorithms on IBM SP2 and on ADSP 21062 dual digital signal processor systems [ J ]. Microprocessors and Microsystems, 2003,27 ( 4 ) :221 - 227.
  • 8TMS320C6416 Fixed-Point Digital Signal Processors[S].Texas Instruments Incorporated,2002.10.
  • 9TMS320C6416 Peripherals Reference Guide-Manual Update Sheet[S].Texas Instruments Incorporated,2002.12.
  • 10EMP7128AE Programmable Logic Device Family Data Sheet[S],AL'TERA,2002.12.

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