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METHODOLOGY FOR DETERMINING OPTIMAL EXPOSURE PARAMETERS OF A HYPERSPECTRAL SCANNING SENSOR

机译:用于确定高光谱扫描传感器的最佳曝光参数的方法

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The purpose of the presented research was to establish a methodology that would allow the registration of hyperspectral images with a defined spatial resolution on a horizontal plane. The results obtained within this research could then be used to establish the optimum sensor and flight parameters for collecting aerial imagery data using an UAV or other aerial system. The methodology is based on an user-selected optimal camera exposure parameters (i.e. time, gain value) and flight parameters (i.e. altitude, velocity). A push-broom hyperspectral imager- the Headwall MicroHyperspec A-series VNIR was used to conduct this research. The measurement station consisted of the following equipment: a hyperspectral camera MicroHyperspec A-series VNIR, a personal computer with HyperSpec III software, a slider system which guaranteed the stable motion of the sensor system, a white reference panel and a Siemens star, which was used to evaluate the spatial resolution. Hyperspectral images were recorded at different distances between the sensor and the target- from 5m to 100m. During the registration process of each acquired image, many exposure parameters were changed, such as: the aperture value, exposure time and speed of the camera's movement on the slider. Based on all of the registered hyperspectral images, some dependencies between chosen parameters had been developed: 1. the Ground Sampling Distance - GSD and the distance between the sensor and the target, 2. the speed of the camera and the distance between the sensor and the target, 3. the exposure time and the gain value, 4. the Density Number and the gain value. The developed methodology allowed us to determine the speed and the altitude of an unmanned aerial vehicle on which the sensor would be mounted, ensuring that the registered hyperspectral images have the required spatial resolution.
机译:本研究的目的是建立一种方法,该方法将允许在水平面上具有定义的空间分辨率的高光谱图像。然后可以使用在该研究中获得的结果来建立使用UAV或其他空中系统来收集空中图像数据的最佳传感器和飞行参数。该方法基于用户选择的最佳摄像机曝光参数(即时间,增益值)和飞行参数(即高度,速度)。推送扫帚高光谱成像器 - 头壁MicroHyperspec A系列VNIR用于进行这项研究。测量站包括以下设备:高光谱相机MicroHyperspec A系列VNIR,一个带有Hyperspec III软件的个人计算机,一种滑块系统,可保证传感器系统的稳定运动,白色参考面板和西门子星,这是用于评估空间分辨率。在传感器和目标之间的不同距离处记录高光谱图像 - 从5米到100m之间。在每个获取的图像的注册过程中,改变了许多曝光参数,例如:相机在滑块上移动的光圈值,曝光时间和速度。基于所有注册的超光谱图像,已经开发了一些所选参数之间的一些依赖性:1。接地采样距离 - GSD和传感器与目标之间的距离,2.相机的速度和传感器之间的距离和传感器之间的距离和传感器之间的距离目标,3.曝光时间和增益值,4.浓度数和增益值。该改进的方法使我们能够确定的速度和在其上的传感器将被安装无人驾驶飞行器的海拔高度,确保注册的高光谱图像具有所需的空间分辨率。

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