Innovative Maritime Uncrewed Systems and Satellite Solutions for Shallow Water Bathymetric Assessment

Laurențiu-Florin Constantinoiu, António Tavares, Rui Miguel Cândido, Eugen Rusu
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Abstract

Shallow water bathymetry is a topic of significant interest in various fields, including civil construction, port monitoring, and military operations. This study presents several methods for assessing shallow water bathymetry using maritime uncrewed systems (MUSs) integrated with advanced and innovative sensors such as Light Detection and Ranging (LiDAR) and multibeam echosounder (MBES). Furthermore, this study comprehensively describes satellite-derived bathymetry (SDB) techniques within the same geographical area. Each technique is thoroughly outlined with respect to its implementation and resultant data, followed by an analytical comparison encompassing their accuracy, precision, rapidness, and operational efficiency. The accuracy and precision of the methods were evaluated using a bathymetric reference survey conducted with traditional means, prior to the MUS survey and with cross-comparisons between all the approaches. In each assessment of the survey methodologies, a comprehensive evaluation is conducted, explaining both the advantages and limitations for each approach, thereby enabling an inclusive understanding for the reader regarding the efficacy and applicability of these methods. The experiments were conducted as part of the Robotic Experimentation and Prototyping using Maritime Unmanned Systems 23 (REPMUS23) multinational exercise, which was part of the Rapid Environmental Assessment (REA) experimentations.
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用于浅水测深评估的创新型海事非螺旋桨系统和卫星解决方案
浅水测深是民用建筑、港口监测和军事行动等各个领域都非常关注的课题。本研究介绍了使用集成了先进创新传感器(如光探测与测距仪(LiDAR)和多波束回声测深仪(MBES))的海事无人值守系统(MUS)评估浅水测深的几种方法。此外,本研究还全面介绍了同一地理区域内的卫星水深测量(SDB)技术。对每种技术的实施和所得数据进行了全面概述,然后对其准确度、精确度、快速性和操作效率进行了分析比较。在 MUS 勘测之前,使用传统方法进行了测深参考勘测,并对所有方法进行了交叉比较,以评估这些方法的准确度和精确度。在对每种勘测方法进行评估时,都会进行全面评价,解释每种方法的优势和局限性,从而使读者能够全面了解这些方法的功效和适用性。这些实验是利用海上无人系统 23(REPMUS23)进行机器人实验和原型开发的多国演习的一部分,也是快速环境评估(REA)实验的一部分。
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