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首页> 外文期刊>E3S Web of Conferences >Predictive maintenance of photovoltaic plants using multirotor drones with automatic recharging system of Li-Po batteries
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Predictive maintenance of photovoltaic plants using multirotor drones with automatic recharging system of Li-Po batteries

机译:利用锂电电池自动再充电系统预测性维护光伏植物

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Creating the correct maintenance of the strings that form the electric generators, from a photovoltaic park, it requires scanning of the equipment with thermal vision cameras, in the visible and infrared field, at an optimum angle determined precisely for each location depending on the geographic position and the architecture of the power station. In general, this angle is difficult to maintain from the ground so it is necessary to mount the cameras on a support, or most efficiently on a multi-rotor drone that is very stable and easy to handle. Maintenance using multi-rotor drones and heat sensitive cameras is no longer a novelty and has multiple advantages: low costs, minimization of work accidents, and the data acquired can be analyzed in real time or can be stored for later analysis. But this process also has disadvantages: limited flight autonomy of drones, generated by the hard development of battery technology and a small number of specialized personnel in this field. To minimize these disadvantages, we have developed an automatic recharging system of batteries, without disconnecting them, which allows the automation of the scanning process and offers the possibility of taking control of the drones and from a distance.
机译:从光伏公园创建形成形成发电机的弦的正确维护,需要在可见光和红外场中使用热视觉摄像头扫描设备,以根据地理位置精确地确定每个位置确定的最佳角度和电站的建筑。通常,该角度难以从地面维持,因此必须在载体上安装相机,或者最有效地在多转子无人机上安装,这是非常稳定且易于手柄的。使用多转子无人机和热敏摄像机的维护不再是一种新颖性,并且具有多种优点:低成本,最小化的工作事故,并且可以实时分析所获取的数据,或者可以存储以供以后分析。但这个过程也有缺点:无人机的有限自主权,由电池技术的艰苦开发和该领域的少数专业人员产生。为了最大限度地减少这些缺点,我们已经开发了一种自动充电电池系统,而不断开它们,这允许扫描过程的自动化并提供控制无人机和远处的可能性。

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