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Development of remote sensing system using an unmanned helicopter (Part 1) - GIS mapping for agricultural land information

机译:使用无人直升机(第1部分) - 农业土地信息的GIS测绘遥感系统的开发

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摘要

The objective of this study is to develop a system that can generate a map regarding crop status obtained by an imaging sensor mounted on an unmanned helicopter. As for the unmanned helicopter used in this research, an RTK-GPS was adopted as a positioning sensor, and an inertial sensor that provides posture (roll and pitch angles) was installed in the helicopter. Moreover, a geomagnetic direction sensor (GDS) that outputs an absolute direction is also equipped with the helicopter. When obtaining the image by the imaging sensor on the helicopter, some distortions caused by change of helicopter's posture arise in the image. In order to remove this distortion, geometric correction by converting from image coordinate to global coordinate is badly needed. But there are errors in posture data. Particularly, large GDS error was caused by warp of geomagnetism surrounding the helicopter. Therefore the method of correction of GDS errors was developed in the study. As the result, it was possible to generate a map including maximum error of 41 cm using the image taken from the helicopter.
机译:本研究的目的是开发一种系统,该系统可以生成关于由安装在无人直升机上的成像传感器获得的作物状态的地图。对于本研究中使用的无人直升机,采用RTK-GPS作为定位传感器,并且在直升机中安装了提供姿势(辊和俯仰角)的惯性传感器。此外,输出绝对方向的地磁方向传感器(GDS)也配备有直升机。当通过直升机上的成像传感器获得图像时,在图像中产生由直升机姿势的变化引起的一些扭曲。为了除去这种失真,需要从从图像坐标转换到全局坐标的几何校正。但姿势数据存在错误。特别是,大的GDS误差是由直升机周围的地磁翘曲引起的。因此,在研究中开发了GDS误差的校正方法。结果,可以使用从直升机拍摄的图像产生包括41厘米的最大误差的地图。

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