首页> 外文会议>Conference on Earth Observing Systems VII, Jul 7-10, 2002, Seattle, USA >In-flight edge response measurements for high-spatial-resolution remote sensing systems
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In-flight edge response measurements for high-spatial-resolution remote sensing systems

机译:高空间分辨率遥感系统的飞行中边缘响应测量

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In-flight measurements of spatial resolution were conducted as part of the NASA Scientific Data Purchase Verification and Validation process. Characterization included remote sensing image products with ground sample distance of 1 meter or less, such as those acquired with the panchromatic imager onboard the IKONOS satellite and the airborne ADAR System 5500 multispectral instrument. Final image products were used to evaluate the effects of both the image acquisition system and image post-processing. Spatial resolution was characterized by full width at half maximum of an edge-response-derived line spread function. The edge responses were analyzed using the tilted-edge technique that overcomes the spatial sampling limitations of the digital imaging systems. As an enhancement to existing algorithms, the slope of the edge response and the orientation of the edge target were determined by a single computational process. Adjacent black and white square panels, either painted on a flat surface or deployed as tarps, formed the ground-based edge targets used in the tests. Orientation of the deployable tarps was optimized beforehand, based on simulations of the imaging system. The effects of such factors as acquisition geometry, temporal variability, Modulation Transfer Function compensation, and ground sample distance on spatial resolution were investigated.
机译:作为NASA科学数据购买验证和确认过程的一部分,进行了空间分辨率的飞行中测量。特征包括地面采样距离小于或等于1米的遥感影像产品,例如用IKONOS卫星和机载ADAR System 5500多光谱仪上的全色成像仪采集的那些。最终的图像产品用于评估图像采集系统和图像后处理的效果。空间分辨率的特征在于,边缘响应派生的线扩散函数的半峰全宽。使用克服了数字成像系统的空间采样限制的倾斜边缘技术来分析边缘响应。作为对现有算法的增强,边缘响应的斜率和边缘目标的方向通过单个计算过程确定。相邻的黑色和白色正方形面板(涂在平坦表面上或作为防水布部署)形成了测试中使用的地面边缘目标。基于成像系统的模拟,预先优化了可展开油布的方向。研究了诸如采集几何形状,时间变异性,调制传递函数补偿和地面样本距离等因素对空间分辨率的影响。

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