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Innovative design and motion mechanism analysis for a multi-moving state autonomous underwater vehicles

机译:多运动状态自主水下航行器的创新设计和运动机理分析

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摘要

In order to achieve the functional requirements of multi-moving state, a new autonomous underwater vehicle (AUV) provided with the functions such as the submarine vectorial thrust, landing on the sea bottom, wheel driving on the ground and crawling on the ground was designed. Then five new theories and methods were proposed about the motion mechanism of the AUV such as vectorial thruster technology, design of a new wheel propeller, kinematics and dynamics, navigation control and the ambient flow field in complex sea conditions, which can all conquer conventional technique shortages and predict the multi-moving state performance under wave disturbance. The theoretical research can realize the results such as a vectorial transmission shaft with the characteristics of spatial deflexion and continual circumgyratetion, parameterized design of the new wheel propeller with preferable open-water performance and intensity characteristics satisfying multi-moving state requirements, motion computation and kinetic analysis of AUV's arbitrary postures under wave disturbance, a second-order sliding mode controller with double-loop structure based on dynamic boundary layer that ensures AUV's trajectory high-precision tracking performance under wave disturbance, fast and exact prediction of the ambient flow field characteristics and the interaction mechanism between AUV hull and wheel propellers. The elaborate data obtained from the theoretical research can provide an important theoretical guidance and technical support for the manufacture of experimental prototype.
机译:为了实现多移动状态的功能要求,一辆新的自主水下车辆(AUV)提供了潜艇矢量推力等功能,落在海底上,车轮在地面上行驶并设计爬行地爬行。然后提出了五种新的理论和方法,涉及AUV的运动机制,如versial推进器技术,新轮螺旋桨,运动学和动力学,导航控制和环境流场的复杂海洋状况,可以征服传统技术短缺并预测波击扰动下的多移动状态性能。理论研究可以实现诸如横向脱落的特点等载体传动轴的结果,新轮螺旋桨的参数化设计,具有优选的开水性能和强度特性,满足多移动状态要求,运动计算和动力学基于动态边界层的双循环结构下波干扰动下的任意姿势的分析,其基于动态边界层,确保AUV轨迹高精度跟踪性能下的波干扰,快速和精确地预测环境流场特征及AUV船体和轮螺旋桨之间的相互作用机制。从理论研究中获得的精心制定数据可以为制造实验原型提供重要的理论指导和技术支持。

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  • 来源
    《中南大学学报(英文版)》 |2017年第5期|1133-1143|共11页
  • 作者单位

    Department of Shipboard Aviation Security and Station Management, Naval Aeronautical Engineering Academy, Qingdao 266041, China;

    SANY Heavy Industry Co. Ltd., Changsha 410100, China;

    Department of Shipboard Aviation Security and Station Management, Naval Aeronautical Engineering Academy, Qingdao 266041, China;

    Department of Shipboard Aviation Security and Station Management, Naval Aeronautical Engineering Academy, Qingdao 266041, China;

  • 收录信息 中国科学引文数据库(CSCD);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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