Technical issues of underwater surveying in Urban rivers

IF 0.8 Q4 ROBOTICS
Takahiro Kudo, Etsuro Shimizu
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引用次数: 0

Abstract

Maritime Autonomous Surface Ships (MASS) are expected to be used in logistics, transportation, security, etc. in the future. When operating a ship, we have to pay attention to invisible objects under the water. Objects above the water surface can be detected by the camera system. On the other hand, underwater objects are generally detected by acoustic sensors called “sonar”. Almost all sonar products are expensive, so it is not realistic to mount them on all MASS. Therefore, surveying underwater with a survey ship and preparing charts that includes underwater objects, it realizes safe and reasonable navigation of MASS. Since mobility systems for tourism and transportation are required in urban areas, MASS is one of the solutions for those systems in urban rivers. However, it is difficult surveying in urban rivers. This paper describes some experimental results, technical issues, and the solution for underwater surveying of urban rivers, for which the demand for MASS is expected to increase in the future.

Abstract Image

城市河流水下测量的技术问题
海上自主水面舰艇(MASS)有望在未来的物流、运输、安全等领域得到应用。操作船只时,我们必须注意水下看不见的物体。水面上的物体可以被摄像头系统检测到。另一方面,水下物体通常由称为“声纳”的声学传感器检测。几乎所有的声纳产品都很昂贵,因此将其安装在所有MASS上是不现实的。因此,使用测量船进行水下测量并编制包括水下物体的海图,可以实现MASS的安全合理导航。由于城市地区需要旅游和交通的移动系统,MASS是城市河流中这些系统的解决方案之一。然而,在城市河流中进行测量是困难的。本文介绍了城市河流水下测量的一些实验结果、技术问题和解决方案,预计未来对MASS的需求将增加。
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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来源期刊
CiteScore
2.00
自引率
22.20%
发文量
101
期刊介绍: Artificial Life and Robotics is an international journal publishing original technical papers and authoritative state-of-the-art reviews on the development of new technologies concerning artificial life and robotics, especially computer-based simulation and hardware for the twenty-first century. This journal covers a broad multidisciplinary field, including areas such as artificial brain research, artificial intelligence, artificial life, artificial living, artificial mind research, brain science, chaos, cognitive science, complexity, computer graphics, evolutionary computations, fuzzy control, genetic algorithms, innovative computations, intelligent control and modelling, micromachines, micro-robot world cup soccer tournament, mobile vehicles, neural networks, neurocomputers, neurocomputing technologies and applications, robotics, robus virtual engineering, and virtual reality. Hardware-oriented submissions are particularly welcome. Publishing body: International Symposium on Artificial Life and RoboticsEditor-in-Chiei: Hiroshi Tanaka Hatanaka R Apartment 101, Hatanaka 8-7A, Ooaza-Hatanaka, Oita city, Oita, Japan 870-0856 ©International Symposium on Artificial Life and Robotics
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