首页> 外文会议>Geoscience and Remote Sensing Symposium, 1999. IGARSS '99 Proceedings. IEEE 1999 International >Using Advanced Very High Resolution Radiometer imagery to map rice cropping areas in central Texas
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Using Advanced Very High Resolution Radiometer imagery to map rice cropping areas in central Texas

机译:使用先进的超高分辨率辐射计图像绘制德克萨斯中部的水稻种植区

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In an effort to explore the relationship between satellite imagery and rice production the authors have examined Advanced Very High Resolution Radiometer (AVHRR) imagery which has been acquired for three consecutive growing seasons in an area centered on rice farms located south-west of Houston. The task of relating rice growth to processed satellite data has been broken into two primary tasks. The first is the identification of techniques to assist in successfully utilizing this imagery source to determine the location of rice growing areas. This task is approached by evaluating several image processing techniques on season-long time series of the Normalized Difference Vegetation Index (NDVI) in order to differentiate rice from other vegetative types. The techniques investigated include traditional classification routines applied to the standard and transformed (using a principal component transformation) time series, as well as signal processing techniques such as matched filtering. The matched filter shows good promise, and results from its application to AVHRR are reported. Verification is approached by using ground-truth data obtained from sources such as the Lower Colorado River Authority (LCRA). With a rice cropping area identification technique in place, it will now be possible to investigate how data derived from AVHRR imagery, such as leaf area index (LAI), could be utilized to understand indicators of crop yields. Additionally, since the literature suggests a relationship between crop vigor and emission levels of greenhouse gases, the AVHRR data may, in turn, be used to begin to link satellite image data with emission models on regional scales.
机译:为了探索卫星图像与稻米生产之间的关系,作者检查了先进超高分辨率辐射计(AVHRR)图像,该图像已连续三个生长季节在休斯敦西南部稻米农场的一个区域中获得。将稻米生长与处理后的卫星数据相关联的任务已分为两个主要任务。首先是确定可成功利用此影像资源确定水稻种植区位置的技术。通过在归一化植被指数(NDVI)的整个季节时间序列上评估几种图像处理技术来实现此任务,以将水稻与其他营养类型区分开。研究的技术包括应用于标准并转换(使用主成分转换)时间序列的传统分类例程,以及信号处理技术(例如匹配滤波)。匹配的滤波器显示出良好的前景,并报告了将其应用于AVHRR的结果。验证是通过使用从下科罗拉多河管理局(LCRA)等来源获得的地面真实数据来进行的。有了水稻种植面积识别技术,现在将有可能研究如何利用AVHRR影像得出的数据(例如叶面积指数(LAI))来了解作物产量的指标。另外,由于文献暗示了作物活力与温室气体排放水平之间的关系,因此可以将AVHRR数据反过来用于开始将卫星图像数据与区域尺度的排放模型联系起来。

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