微型水下机器人的驱动与运动:综述

IF 11.6 1区 工程技术 Q1 ENGINEERING, MULTIDISCIPLINARY
Panbing Wang , Xinyu Liu , Aiguo Song
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引用次数: 0

摘要

水下机器人因其独特的穿越和导航水下区域的能力而成为海洋探险的关键工具,这些水下区域对人类探险构成了挑战或危险。微型水下机器人具有体积小、噪音小、运动灵活等优点,广泛应用于海洋科学、资源调查、海底地质调查和海洋生物观测等领域。近年来,受仿生学等学科的启发,研究人员开发了多种微型水下机器人,取得了厘米级无线控制、运动速度高达数百毫米/秒、水下三维运动能力、机器人群、水下操作机器人等许多里程碑式的成果。本文概述了微型水下机器人的驱动方法和运动模式,并评估了每种方法的优缺点。总结了现有微型水下机器人面临的挑战,并展望了未来的发展趋势。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Actuation and Locomotion of Miniature Underwater Robots: A Survey
Underwater robots have emerged as key tools for marine exploration because of their unique ability to traverse and navigate underwater regions, which pose challenges or dangers to human expeditions. Miniature underwater robots are widely employed in marine science, resource surveys, seabed geological investigations, and marine life observations, owing to their compact size, minimal noise, and agile movement. In recent years, researchers have developed diverse miniature underwater robots inspired by bionics and other disciplines, leading to many landmark achievements such as centimeter-level wireless control, movement speeds up to hundreds of millimeters per second, underwater three-dimensional motion capabilities, robot swarms, and underwater operation robots. This article offers an overview of the actuation methods and locomotion patterns utilized by miniature underwater robots and assesses the advantages and disadvantages of each method. Furthermore, the challenges confronting currently available miniature underwater robots are summarized, and future development trends are explored.
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来源期刊
Engineering
Engineering Environmental Science-Environmental Engineering
自引率
1.60%
发文量
335
审稿时长
35 days
期刊介绍: Engineering, an international open-access journal initiated by the Chinese Academy of Engineering (CAE) in 2015, serves as a distinguished platform for disseminating cutting-edge advancements in engineering R&D, sharing major research outputs, and highlighting key achievements worldwide. The journal's objectives encompass reporting progress in engineering science, fostering discussions on hot topics, addressing areas of interest, challenges, and prospects in engineering development, while considering human and environmental well-being and ethics in engineering. It aims to inspire breakthroughs and innovations with profound economic and social significance, propelling them to advanced international standards and transforming them into a new productive force. Ultimately, this endeavor seeks to bring about positive changes globally, benefit humanity, and shape a new future.
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