基于几何学的多波束测量线布局问题

Chuangqi Li, Yuhang Wang, Fan Hu
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引用次数: 0

摘要

多波束测量系统在海洋测绘和水下地形探测中发挥着重要作用。该系统通过同时发射多个波束,可以准确接收海底反射的声波,提供更精确、更全面的水深信息,同时有效揭示水下地形的复杂性和特征。在 2023 年全国大学生数学建模竞赛 B 题提供的背景和应用下,本文研究了海底宽度测量与波束位置、角度和坡度等因素之间的关系。利用几何关系、三角相似和正弦定理,建立了一个数学模型,以确定相邻带状覆盖宽度和重叠率。此外,还利用贪婪算法确定了最佳策略,并采用二进制搜索回溯法推导出具有所需重叠率的下一条相邻勘测线的间隔,从而获得最佳地形探测策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Geometry-based multi-beam survey line layout problem
The multi-beam measurement system plays a crucial role in ocean mapping and underwater terrain detection. By simultaneously transmitting multiple beams, the system can accurately receive sound waves reflected from the seabed, providing more precise and comprehensive water depth information while effectively revealing the complexity and characteristics of underwater terrain. Under the background and application provided by Question B of the 2023 National Mathematical Contest in Modeling for College Students, this paper investigates the relationship between ocean floor width measurement and factors such as beam position, angle, and slope. Utilizing geometric relations, trigonometric similarity, and sine theorem, a mathematical model is established to determine adjacent strip coverage width and overlap ratio. Furthermore, an optimal strategy is determined by using a greedy algorithm, while binary search backtracking is employed to derive the interval of the next adjacent survey line with the required overlap ratio to obtain an optimal terrain detection strategy.
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