首页> 外文期刊>Selected Topics in Applied Earth Observations and Remote Sensing, IEEE Journal of >Investigating the Relationship Between Satellite-Based Freeze/Thaw Products and Land Surface Temperature
【24h】

Investigating the Relationship Between Satellite-Based Freeze/Thaw Products and Land Surface Temperature

机译:研究基于卫星的冻融产品与地表温度之间的关系

获取原文
获取原文并翻译 | 示例
           

摘要

This paper investigates surface temperature variables as they relate to passive microwave-derived surface freeze/thaw (FT) state and assesses the accuracy of such FT products relative to surface temperature. Utilizing retrievals from the soil moisture active/passive (SMAP), advanced microwave scanning radiometer, and special sensor microwave imager instruments, surface FT records have previously been derived globally. Moderate Resolution Imaging Spectroradiometer skin temperature, North American Land Data Assimilation System (NLDAS) skin, 0-10-cm soil layer, and 2-m air temperatures are compared to the various FT state products (FTSPs) by defining the threshold for FT state transitions at 0 degrees C. This paper utilizes the 2015-2016 overlap period in FT records within the NLDAS domain. Spatial variability of classification accuracy (CA) is then investigated over the study area. A proportional differencing method also enables the identification of biases between FTSPs and surface temperature variables. Additionally, by analyzing probability distribution functions of FTSPs associated with temperature values, we assess the distribution of temperature variables as they relate to FT classifications. Classification agreement is shown to vary with sensor configuration, seasonality, and retrieval time. Air temperature is found to have the highest CAs across FTSPs (81%-91%), while NLDAS soil exhibits a close relationship to FTSPs, especially in regard to SMAP products. Finally, ascending (P.M.) retrievals are shown to be increasingly linked to the selected temperature parameters as compared to descending (A.M.) observations. This paper contributes to an improved understanding of current FTSPs and will benefit efforts to enhance future FT products.
机译:本文研究了与被动微波衍生的表面冻结/融化(FT)状态相关的表面温度变量,并评估了此类FT产品相对于表面温度的准确性。利用从土壤水分主动/被动(SMAP),先进的微波扫描辐射计和特殊传感器微波成像仪中获取的信息,表面FT记录先前已在全球范围内获得。通过定义FT状态的阈值,将中等分辨率成像光谱仪的皮肤温度,北美土地数据同化系统(NLDAS)皮肤,0-10-cm的土壤层和2 m的气温与各种FT状态产品(FTSP)进行比较转换在0摄氏度。本文利用NLDAS域内FT记录中的2015-2016年重叠期。然后在研究区域内调查分类精度(CA)的空间变异性。比例差分方法还可以识别FTSP和表面温度变量之间的偏差。此外,通过分析与温度值相关的FTSP的概率分布函数,我们评估了与FT分类有关的温度变量的分布。显示分类协议随传感器配置,季节性和检索时间而变化。发现空气温度在FTSP中具有最高的CA(81%-91%),而NLDAS土壤与FTSP密切相关,尤其是在SMAP产品方面。最后,与降序(A.M.)观测值相比,升序(P.M.)取值与所选温度参数之间的联系越来越紧密。本文有助于增进对当前FTSP的理解,并将有益于增强未来FT产品的工作。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号