基于无人飞行器的风场桥梁检测任务驱动路径规划

IF 1.8 Q3 MECHANICS Fluids Pub Date : 2023-12-16 DOI:10.3390/fluids8120321
Yonghu Wang, Chengcheng Duan, Xinyu Huang, Juan Zhao, Ran Zheng, Haiping Li
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引用次数: 0

摘要

使用无人飞行器 (UAV) 进行桥梁检测越来越受欢迎,因为它能够提高效率并确保监测人员的安全。与传统的人工监测方法相比,无人机检测是一种更安全、更高效的替代方法。本文研究了在特定任务中气象条件对基于无人机的桥梁监测的影响,旨在提高无人机昂贵部件的安全性。桥梁结构后方的尾流涡旋会因气流而随时间变化,这会直接影响无人机飞行的安全性。为了评估这种影响,根据不同任务的特定监测要求,并考虑到风速、风向和气温,进行了数值分析。为了优化无人机飞行轨迹,必须考虑尾流涡旋强度及其相关影响区域,这可能会对无人机飞行造成潜在危险。此外,分析还应考虑不同类型桥柱对尾流涡旋的空气动力影响。在受风场影响的安全区域内进行桥梁检测时,利用优化算法来优化无人机的飞行轨迹。最终确定了有效和安全的飞行路径。研究表明,不同的风速会对无人机的安全飞行区域产生影响,即使风速低于操作要求。因此,在使用无人机监测桥梁时,必须考虑气象条件的影响。此外,据观察,与圆形圆柱监测相比,方形圆柱监测时无人机的飞行路径更长,耗时更多。确定有效的无人机检测路径对于在大风条件下完成桥梁监测任务、建立桥梁检测标准和开发智能桥梁检测系统(IBIS)至关重要。
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Task-Driven Path Planning for Unmanned Aerial Vehicle-Based Bridge Inspection in Wind Fields
Using unmanned aerial vehicles (UAVs) for bridge inspection is becoming increasingly popular due to its ability to improve efficiency and ensure the safety of monitoring personnel. Compared to traditional manual monitoring methods, UAV inspections are a safer and more efficient alternative. This paper examines the impact of meteorological conditions on UAV-based bridge monitoring during specific tasks, with the aim of enhancing the safety of the UAV’s costly components. The wake vortex behind a bridge structure can vary over time due to airflow, which can have a direct impact on the safety of UAV flights. To assess this impact, numerical analysis is conducted based on monitoring requirements specific to different tasks, taking into account wind speed, wind direction, and air temperature. In order to optimize UAV trajectory, it is important to consider the wake vortex intensity and its associated influence region, which can pose a potential danger to UAV flight. Additionally, the analysis should take into account the aerodynamic effects of different types of bridge columns on the wake vortex. An optimization algorithm was utilized to optimize the trajectory of a UAV during bridge inspections within the safe region affected by wind fields. This resulted in the determination of an effective and safe flight path. The study reveals that varying wind speeds have an impact on the safe flight zone of UAVs, even if they are below the operational requirements. Therefore, when monitoring bridges using UAVs, it is important to take into account the influence of meteorological conditions. Furthermore, it was observed that the flight path of UAVs during square cylinder column monitoring is longer and more time-consuming than round cylinder column monitoring. Determining an effective UAV inspection path is crucial for completing bridge monitoring tasks in windy conditions, establishing bridge inspection standards, and developing the Intelligent Bridge Inspection System (IBIS).
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来源期刊
Fluids
Fluids Engineering-Mechanical Engineering
CiteScore
3.40
自引率
10.50%
发文量
326
审稿时长
12 weeks
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