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Novel implementation technique for a wavelet-based broadband signal detection system

机译:一种基于小波的宽带信号检测系统的新型实现技术

摘要

This thesis reports on the design, simulation and implementation of a novel Implementation for a Wavelet-based Broadband Signal Detection System. There is a strong interest in methods of increasing the resolution of sonar systems for the detection of targets at sea. A novel implementation of a wideband active sonar signal detection system is proposed in this project. In the system the Continuous Wavelet Transform is used for target motion estimation and an Adaptive-Network-based Fuzzy inference System (ANFIS) is adopted to minimize the noise effect on target detection. A local optimum search algorithm is introduced in this project to reduce the computation load of the Continuous Wavelet Transform and make it suitable for practical applications. The proposed system is realized on a Xilinx University Program Virtex-II Pro Development System which contains a Virtex II pro XC2VP30 FPGA chip with 2 powerPC 405 cores. Testing for single target detection and multiple target detection shows the proposed system is able to accurately locate targets under reverberation-limited underwater environment with a Signal-Noise-Ratio of up to -30db, with location error less than 10 meters and velocity estimation error less than 1 knot. In the proposed system the combination of CWT and local optimum search algorithm significantly saves the computation time for CWT and make it more practical to real applications. Also the implementation of ANFIS on the FPGA board indicates in the future a real-time ANFIS operation with VLSI implementation would be possible.
机译:本文报道了一种基于小波的宽带信号检测系统的新型实现的设计,仿真和实现。人们对提高声纳系统的分辨率以检测海上目标的方法非常感兴趣。该项目提出了一种宽带有源声纳信号检测系统的新型实现方案。在该系统中,连续小波变换用于目标运动估计,并采用基于自适应网络的模糊推理系统(ANFIS)来最大程度地减少噪声对目标检测的影响。该项目引入了局部最优搜索算法,以减少连续小波变换的计算量,使其适合实际应用。拟议的系统在Xilinx大学计划Virtex-II Pro开发系统上实现,该系统包含Virtex II pro XC2VP30 FPGA芯片和2个powerPC 405内核。对单目标检测和多目标检测的测试表明,该系统能够在混响受限的水下环境中准确定位目标,信噪比高达-30db,位置误差小于10米,速度估计误差较小超过1节。在所提出的系统中,CWT和局部最优搜索算法的结合大大节省了CWT的计算时间,使其在实际应用中更加实用。另外,在FPGA板上实施ANFIS表示将来可以通过VLSI实现实时ANFIS操作。

著录项

  • 作者

    Cheng Sheng;

  • 作者单位
  • 年度 2010
  • 总页数
  • 原文格式 PDF
  • 正文语种 English
  • 中图分类

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