Optimization Model of Survey Line Layout for Multibeam Bathymetric Systems

Shenrui Lin, Yuangang Li, Yaru Wang
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Abstract

Multibeam bathymetric system is an underwater terrain measurement technology with high efficiency, high accuracy and high resolution. Based on the multibeam bathymetric system, this paper establishes an ideal geometric model and an isobath iterative model. Through the physical method of ideal model, the actual physical problem of multibeam sounding is abstracted into a geometric model about a conic curve, and under the constraint of overlap rate, the coordinates of the next survey line are iterated according to the current depth to solve the optimal set of survey lines. First, the seawater depths, strip coverage widths, and overlap rates with the previous line are calculated for lines at different distances from the center point. Then, the angle between the direction of the survey line and the projection of the normal direction of the seafloor slope on the horizontal plane is introduced to solve for the current coverage width of the survey line. Again, the optimal set of survey lines is solved under the constraint of the overlap rate. Finally, Sobel edge detection is used to divide the surface of the seafloor terrain into multiple planes with defined slope angles to solve the optimal line set for the entire seafloor surface. The structure of the proposed mathematical model is clear and simple, which is in line with the actual situation.
多波束测深系统勘测线布局优化模型
多波束测深系统是一种高效率、高精度、高分辨率的水下地形测量技术。本文以多波束测深系统为基础,建立了理想几何模型和等深线迭代模型。通过理想模型的物理方法,将多波束测深的实际物理问题抽象为关于圆锥曲线的几何模型,在重叠率的约束下,根据当前深度迭代下一条测线的坐标,求解最优测线集。首先,计算离中心点不同距离的测线的海水深度、带状覆盖宽度以及与前一条测线的重叠率。然后,引入勘测线方向与海底斜坡法线方向在水平面上的投影之间的夹角,求解当前勘测线的覆盖宽度。再次,在重叠率的约束下求解最佳勘测线集。最后,利用 Sobel 边缘检测将海底地形表面划分为多个具有确定坡度角的平面,从而求解整个海底表面的最优勘测线集。所提出的数学模型结构清晰、简单,符合实际情况。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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