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The Development of an Open Hardware and Software System Onboard Unmanned Aerial Vehicles to Monitor Concentrated Solar Power Plants

机译:开发用于监视集中式太阳能发电厂的无人机用开放硬件和软件系统

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Concentrated solar power (CSP) plants are increasingly gaining interest as a source of renewable energy. These plants face several technical problems and the inspection of components such as absorber tubes in parabolic trough concentrators (PTC), which are widely deployed, is necessary to guarantee plant efficiency. This article presents a system for real-time industrial inspection of CSP plants using low-cost, open-source components in conjunction with a thermographic sensor and an unmanned aerial vehicle (UAV). The system, available in open-source hardware and software, is designed to be employed independently of the type of device used for inspection (laptop, smartphone, tablet or smartglasses) and its operating system. Several UAV flight missions were programmed as follows: flight altitudes at 20, 40, 60, 80, 100 and 120 m above ground level; and three cruising speeds: 5, 7 and 10 m/s. These settings were chosen and analyzed in order to optimize inspection time. The results indicate that it is possible to perform inspections by an UAV in real time at CSP plants as a means of detecting anomalous absorber tubes and improving the effectiveness of methodologies currently being utilized. Moreover, aside from thermographic sensors, this contribution can be applied to other sensors and can be used in a broad range of applications where real-time georeferenced data visualization is necessary.
机译:集中式太阳能发电厂(CSP)作为可再生能源越来越受到关注。这些工厂面临一些技术问题,为了保证工厂效率,必须对广泛使用的抛物线槽浓缩器(PTC)中的吸收器管等组件进行检查。本文介绍了一种用于CSP工厂实时工业检查的系统,该系统使用低成本,开放源代码组件以及热成像传感器和无人机(UAV)。该系统具有开源硬件和软件功能,旨在独立于检查设备(笔记本电脑,智能手机,平板电脑或智能眼镜)及其操作系统的类型使用。若干无人机飞行任务的程序安排如下:飞行高度在地面20、40、60、80、100和120 m处;三种巡航速度:5、7和10 m / s。选择并分析了这些设置,以优化检查时间。结果表明,有可能通过无人机在CSP工厂进行实时检查,作为检测异常吸收管和提高当前使用方法有效性的一种手段。此外,除了热成像传感器外,这种贡献还可以应用于其他传感器,并且可以用于需要实时地理参考数据可视化的广泛应用中。

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