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Developing Inspection Methodology of Solar Energy Plants by Thermal Infrared Sensor on Board Unmanned Aerial Vehicles

机译:无人驾驶航空车辆热红外传感器开发太阳能设备的检验方法

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摘要

Photovoltaic (PV) power generation facilities have been built on various scales due to rapid growth in response to demand for renewable energy. Facilities built on diverse terrain and on such a scale are required to employ fast and accurate monitoring technology for stable electrical production and maintenance. The purpose of this study was to develop a technology to analyze the normal operation and failure of solar modules by acquiring images by attaching optical and thermal infrared sensors to unmanned aerial vehicles (UAVs) and producing orthographic images of temperature information. The results obtained in this study are as follows: (1) a method of using optical and thermal infrared sensors with different resolutions at the same time is able to produce accurate spatial information, (2) it is possible to produce orthographic images of thermal infrared images, (3) the analysis of the temperature fluctuation characteristics of the solar panel and cell showed that the abnormal module and cell displayed a larger temperature change than the normal module and cell, and (4) the abnormal heat generation of the panel and cell can be accurately discerned by the abnormal state panel and cell through the spatial distribution of the temperature. It is concluded that the inspection method of the solar module using the obtained UAV-based thermal infrared sensor can be useful for safety inspection and monitoring of the rapidly growing solar power generation facility.
机译:由于对可再生能源的需求快速增长,光伏(PV)发电设施在各种尺度上建立了各种尺度。需要在不同地形和这种规模上建造的设施,以采用快速准确的监控技术,以实现稳定的电气生产和维护。本研究的目的是通过通过将光学和热红外传感器(无人机)附加到无人的空中车辆(UAV)并产生温度信息的正交图像来开发一种技术来分析用于分析太阳能模块的正常操作和失效。本研究中获得的结果如下:(1)同时使用不同分辨率的光学和热红外传感器的方法能够产生准确的空间信息,(2)可以产生热红外的正射图像图像,(3)太阳能电池板和细胞的温度波动特性分析表明,异常模块和电池显示比法线模块和细胞更大的温度变化,以及(4)面板和细胞的异常发热通过异常状态面板和细胞可以通过温度的空间分布精确地辨别。结论是,使用所获得的基于UV基的热红外传感器的太阳能模块的检查方法可用于安全检查和监测快速生长的太阳能发电设施。

著录项

  • 作者

    Dong Ho Lee; Jong Hwa Park;

  • 作者单位
  • 年度 2019
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  • 原文格式 PDF
  • 正文语种 eng
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