基于单波束多波束测深系统的海洋航道测量方法
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TN98

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Sea channel survey method considering single beam multi beam bathymetric system
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    摘要:

    海洋航道测量对于保证船只航行的可靠运行具有重要意义,而当前在异常测量方面采取的系统所利用的仅仅是测量误差时间或空间相关性的一种。充分考虑到现有单波束多波束测深系统(SBMBBS)存在的不足以及误差矩阵的时空相关性,基于单波束多波束测深系统而提出了海洋航道测量方法。该系统中充分发挥了海洋航道测量具有的降维能力以及小波变换的多尺度建模能力,来构建测量误差系统。在对残余测量误差进行分析时,主要是通过指数加权移动平均法控制图实现。并且有效运用了滑动窗口机制实现了单波束多波束测深系统的海洋航道测量,由此而获得了在线的SBMBBS。通过对海洋航道测量数据以及得到的模拟结果进行分析,能够得出和鸟群算法(BSA)与K均值冷光技术算法(KLE)算法相比,SBMBBS算法的优势更加突出,具有更优的测量性能。结果表明,在线SBMBBS算法测量性能与SBMBBS算法十分接近,并且需要很短的单步执行时间,符合海洋航道测量的要求。

    Abstract:

    Marine channel measurement is of great significance to ensure the reliable operation of ships. Currently, the system used in anomaly measurement is only one of the time or spatial correlation of measurement errors. Considering the shortcomings of the existing single-beam multi-beam bathymetric system (SBMBBS) and the spatio-temporal correlation of the error matrix, a method of ocean channel measurement is proposed based on the single-beam multi-beam bathymetric system. In this system, the dimension reduction ability of ocean channel measurement and the multi-scale modeling ability of wavelet transform are fully utilized to construct the measurement error system. In the analysis of residual error, it is mainly achieved through control charts. In addition, the sliding window mechanism is effectively used to realize the ocean channel measurement of single-beam multi-beam bathymetry system, from which an on-line SBMBS is obtained. Through the analysis of the measured data and the simulation results, it can be concluded that compared with the BSA algorithm and KLE algorithm, SBMBBS algorithm has more prominent advantages and better measurement performance. The results show that the measurement performance of the online SBMBBS algorithm is very close to that of the SBMBBS algorithm, and requires a very short one-step execution time, which meets the requirements of ocean channel measurement.

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王文杰.基于单波束多波束测深系统的海洋航道测量方法[J].电子测量技术,2019,42(8):45-51

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  • 在线发布日期: 2021-08-16
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