UAV-based measurement of vegetation indices for environmental monitoring

T. Arnold, M. D. Biasio, A. Fritz, R. Leitner
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引用次数: 39

Abstract

This paper presents an airborne multi-spectral imaging sensor which is able to simultaneously capture three visible and three near infrared channels. The first prototype was integrated in a Schiebel CAMCOPTER® S-100 VTOL (Vertical Take-Off and Landing) UAV (Unmanned Aerial Vehicle) for inflight tests. A low cost version of the initial multi-spectral imaging system was developed to fit into a more compact UAV. The imaging system captures six bands with a minimal spatial resolution of approx. 10cm × 10cm (depending on altitude). Results indicate that the system is able to resist the high vibration level during flight and that the actively stabilized camera gimbal compensates for rapid roll/tilt movements of the UAV. After image registration the acquired images are stitched together for land cover mapping and flight path validation. Moreover the system is able to distinguish between different types of vegetation and soil.
基于无人机的环境监测植被指数测量
提出了一种能够同时捕获3个可见光通道和3个近红外通道的机载多光谱成像传感器。首个原型机集成在Schiebel CAMCOPTER®S-100垂直起降(VTOL)无人机(无人机)中进行飞行测试。最初多光谱成像系统的一个低成本版本被发展适应到一个更紧凑的UAV。成像系统捕获六个波段,最小空间分辨率约为。10cm × 10cm(视海拔而定)。结果表明,该系统能够抵抗飞行过程中的高振动水平,主动稳定的相机框架补偿了无人机的快速滚转/倾斜运动。图像配准后,将采集到的图像拼接在一起进行地表覆盖制图和航迹验证。此外,该系统还能够区分不同类型的植被和土壤。
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