大型水电站大坝的高精细、低成本水下检测

Michael Grömer, E. Nocerino, A. Calantropio, F. Menna, Ansgar Dreier, Lukas Winiwarter, Gottfried Mandlburger
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摘要

摘要文章介绍了一种结合低成本摄像系统和遥控潜水器 (ROV) 的实用方法,可对大型水电基础设施进行全面但经济可行的水下勘测。通常情况下,对水库进行检查需要抽干水库中的水,以便进行目视检查,而目视检查需要耗费大量时间,对操作人员的安全构成风险,并且会造成发电损失。在这方面,遥控潜水器比传统方法更安全、更高效。这项研究是在奥地利的帕克水库进行的,利用地面激光扫描和水上部件的棋盘式标记建立了一个参考框架。还使用了配备 GoPro 摄像机和照明系统的遥控潜水器进行水下记录。通过近距离摄影测量方法,可以生成水下基础设施的三维点云,精度达到勘测级水平。我们探索了各种策略来执行束块调整(BBA),其中包括使用地面控制点(GCP)的策略、不使用地面控制点但预先校准初始相机参数的策略,以及在 BBA 中结合使用地面控制点和预先校准相机参数的策略。本文介绍并讨论了一种使用低成本传感器的检测技术的部署情况,该技术可生成水下基础设施区域高度详细的三维模型,便于检测和定位以进行维护检查,同时具有成本效益。论文加强了优化相机设置的最佳实践建议,考虑了电子图像稳定的影响,建议避免使用电子图像稳定,并使用先进的校准方法。
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High-detail and low-cost underwater inspection of large-scale hydropower dams
Abstract. The article presents a practical method that combines low-cost camera systems with remotely operated vehicles (ROVs) to accomplish a comprehensive but economically feasible underwater survey of large hydropower infrastructures. Typically, inspecting reservoirs entails draining them off to allow for visual inspections, which are time-intensive, pose risks to operators' safety and are associated with generation losses. In this regard, ROVs are a much safer and more efficient alternative to traditional methods. The study was conducted at the Pack reservoir in Austria, where a reference framework was set up using terrestrial laser scanning and checkerboard markings for the above-water components. A ROV equipped with a GoPro camera and lighting system for the underwater recordings has been employed. Via a close-range photogrammetric approach, it was possible to generate 3D point clouds of the submerged infrastructure with a survey-grade accuracy level. Various strategies were explored to perform bundle block adjustment (BBA), among these were strategies where ground control points (GCPs) were used, strategies without the use of GCPs but pre-calibrated initial camera parameters and strategies with a combination of using both GCPs and pre-calibrated camera parameters in the BBA. The deployment of an inspection technique using low-cost sensors that can generate highly detailed three-dimensional models of submerged infrastructure areas is presented and discussed, allowing easy detection and localization for maintenance inspection, all while being cost-effective. The paper strengthens the suggestion of best practices that optimize camera settings, considering the effect of electronic image stabilization, suggesting its avoidance, and using advanced calibration methods.
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