首页> 外文期刊>Journal of Robotic Systems >In-water visual ship hull inspection using a hover-capable underwater vehicle with stereo vision
【24h】

In-water visual ship hull inspection using a hover-capable underwater vehicle with stereo vision

机译:使用具有立体视觉功能的具有悬停功能的水下航行器进行水下视觉船体检查

获取原文
获取原文并翻译 | 示例

摘要

Underwater visual inspection is an important task for checking the structural integrity and biofouling of the ship hull surface to improve the operational safety and efficiency of ships and floating vessels. This paper describes the development of an autonomous in-water visual inspection system and its application to visual hull inspection of a full-scale ship. The developed system includes a hardware vehicle platform and software algorithms for autonomous operation of the vehicle. The algorithms for vehicle autonomy consist of the guidance, navigation, and control algorithms for real-time and onboard operation of the vehicle around the hull surface. The environmental perception of the developed system is mainly based on optical camera images, and various computer vision and optimization algorithms are used for vision-based navigation and visual mapping. In particular, a stereo camera is installed on the underwater vehicle to estimate instantaneous surface normal vectors, which enables high-precision navigation and robust visual mapping, not only on flat areas but also over moderately curved hull surface areas. The development process of the vehicle platform and the implemented algorithms are described. The results of the field experiment with a full-scale ship in a real sea environment are presented to demonstrate the feasibility and practical performance of the developed system.
机译:水下目视检查是检查船体表面的结构完整性和生物污损以提高船舶和浮船的操作安全性和效率的重要任务。本文介绍了自主式水下目视检查系统的开发及其在大型船舶目视船体检查中的应用。开发的系统包括硬件车辆平台和用于车辆自主运行的软件算法。车辆自动驾驶算法由制导,导航和控制算法组成,用于车辆在船体表面的实时和机载操作。所开发系统的环境感知主要基于光学相机图像,并且各种计算机视觉和优化算法用于基于视觉的导航和视觉映射。特别是,在水下航行器上安装了立体摄像机以估计瞬时水面法线矢量,不仅在平坦区域而且在中等弯曲的船体表面积上,都可以实现高精度导航和鲁棒的视觉映射。描述了车辆平台的开发过程和实现的算法。提出了在真实海洋环境中使用大型船舶进行现场试验的结果,以证明所开发系统的可行性和实际性能。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号