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Calibration of Multibeam Echo Sounder Transducer Array Based on Focused Beamforming

机译:基于聚焦波束形成的多波束回声测深仪阵列校准

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摘要

The detection accuracy of the multibeam echo sounder (MBES) can be damaged severely and inevitably due to the mismachining tolerance of the transducer array. Therefore, it is necessary to demonstrate the performance of the multi-element transducer array to guarantee the accuracy of the processing algorithms. In this paper, a kind of multi-element MBES receiving transducer array self-calibrating method is proposed to manage the serious defocusing problem of the conventional methods. We analyze the error source and their effect on the MBES detection. The near-field beamforming and the least residual error criterion methods are employed to calibrate the average element spacing. The integrated self-calibrating method is managed to calibrate the transducer array, considering the coupling between the circuits and the element with a channel uniformity problem. An experiment is carried in a small-size tank to evaluate the method proposed. The outfield experimental data are compensated by the average element spacing and the beam response error estimated in the tank experiment. The simulations and the field data processing results indicate that the novel method proposed can effectively demonstrate the performance of the receiving transducer array and guarantee the coverage of the MBES system.
机译:多波束回声测深仪(MBES)的检测精度可能由于换能器阵列的加工误差而受到严重和不可避免的损害。因此,有必要演示多元素换能器阵列的性能,以保证处理算法的准确性。针对传统方法存在的严重散焦问题,提出了一种多元素MBES接收换能器阵列自标定方法。我们分析了错误源及其对MBES检测的影响。采用近场波束形成和最小残留误差准则方法来校准平均元素间距。考虑到电路和元件之间的耦合以及通道均匀性问题,采用集成的自校准方法来校准换能器阵列。在小型水箱中进行了实验,以评估所建议的方法。外场实验数据通过在储罐实验中估计的平均单元间距和光束响应误差进行补偿。仿真和现场数据处理结果表明,所提出的新方法可以有效地证明接收换能器阵列的性能,并保证了MBES系统的覆盖范围。

著录项

  • 来源
    《Sensors Journal, IEEE》 |2018年第24期|10199-10207|共9页
  • 作者单位

    Acoustic Science and Technology Laboratory, Key Laboratory of Marine Information Acquisition and Security, Ministry of Industry and Information Technology, College of Underwater Acoustic Engineering, Harbin Engineering University, Harbin, China;

    Acoustic Science and Technology Laboratory, Key Laboratory of Marine Information Acquisition and Security, Ministry of Industry and Information Technology, College of Underwater Acoustic Engineering, Harbin Engineering University, Harbin, China;

    Acoustic Science and Technology Laboratory, Key Laboratory of Marine Information Acquisition and Security, Ministry of Industry and Information Technology, College of Underwater Acoustic Engineering, Harbin Engineering University, Harbin, China;

    Acoustic Science and Technology Laboratory, Key Laboratory of Marine Information Acquisition and Security, Ministry of Industry and Information Technology, College of Underwater Acoustic Engineering, Harbin Engineering University, Harbin, China;

    Acoustic Science and Technology Laboratory, Key Laboratory of Marine Information Acquisition and Security, Ministry of Industry and Information Technology, College of Underwater Acoustic Engineering, Harbin Engineering University, Harbin, China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Transducers; Array signal processing; Sensors; Underwater acoustics; Arrays; Acoustic beams; Molecular beam epitaxial growth;

    机译:传感器;阵列信号处理;传感器;水下声学;阵列;声束;分子束外延生长;

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