首页> 外文期刊>Remote Sensing >Validation of 7 Years in-Flight HY-2A Calibration Microwave Radiometer Products Using Numerical Weather Model and Radiosondes
【24h】

Validation of 7 Years in-Flight HY-2A Calibration Microwave Radiometer Products Using Numerical Weather Model and Radiosondes

机译:使用数值天气模型和无线电探空仪验证7年飞行中HY-2A校准微波辐射计产品的有效性

获取原文
           

摘要

Haiyang-2A (HY-2A) has been working in-flight for over seven years, and the accuracy of HY-2A calibration microwave radiometer (CMR) data is extremely important for the wet troposphere delay correction (WTC) in sea surface height (SSH) determination. We present a comprehensive evaluation of the HY-2A CMR observation using the numerical weather model (NWM) for all the data available period from October 2011 to February 2018, including the WTC and the precipitable water vapor (PWV). The ERA(ECMWF Re-Analysis)-Interim products from European Centre for Medium-Range Weather Forecasts (ECMWF) are used for the validation of HY-2A WTC and PWV products. In general, a global agreement of root-mean-square (RMS) of 2.3 cm in WTC and 3.6 mm in PWV are demonstrated between HY-2A observation and ERA-Interim products. Systematic biases are revealed where before 2014 there was a positive WTC/PWV bias and after that, a negative one. Spatially, HY-2A CMR products show a larger bias in polar regions compared with mid-latitude regions and tropical regions and agree better in the Antarctic than in the Arctic with NWM. Moreover, HY-2A CMR products have larger biases in the coastal area, which are all caused by the brightness temperature (TB) contamination from land or sea ice. Temporally, the WTC/PWV biases increase from October 2011 to March 2014 with a systematic bias over 1 cm in WTC and 2 mm in PWV, and the maximum RMS values of 4.62 cm in WTC and 7.61 mm in PWV occur in August 2013, which is because of the unsuitable retrieval coefficients and systematic TB measurements biases from 37 GHz band. After April 2014, the TB bias is corrected, HY-2A CMR products agree very well with NWM from April 2014 to May 2017 with the average RMS of 1.68 cm in WTC and 2.65 mm in PWV. However, since June 2017, TB measurements from the 18.7 GHz band become unstable, which led to the huge differences between HY-2A CMR products and the NWM with an average RMS of 2.62 cm in WTC and 4.33 mm in PWV. HY-2A CMR shows high accuracy when three bands work normally and further calibration for HY-2A CMR is in urgent need. Furtherly, 137 global coastal radiosonde stations were used to validate HY-2A CMR. The validation based on radiosonde data shows the same variation trend in time of HY-2A CMR compared to the results from ECMWF, which verifies the results from ECMWF.
机译:Haiyang-2A(HY-2A)在飞行中已经工作了7年以上,HY-2A校准微波辐射计(CMR)数据的准确性对于海面高度的湿对流层延迟校正(WTC)极为重要( SSH)确定。我们使用数值天气模型(NWM)对2011年10月至2018年2月的所有可用数据进行了HY-2A CMR观测的综合评估,包括WTC和可沉淀水汽(PWV)。欧洲中距离天气预报中心(ECMWF)的ERA(ECMWF重新分析)临时产品用于验证HY-2A WTC和PWV产品。总的来说,在HY-2A观测值和ERA-Interim产品之间,在WTC中达到2.3 cm的均方根(RMS)在PWV中获得3.6 mm的全球一致性。在2014年之前,WTC / PWV出现正偏见,然后是负出现偏见。在空间上,与中纬度地区和热带地区相比,HY-2A CMR产品在极地地区表现出更大的偏差,并且在南极地区与在西北部具有NWM的地区相比,一致性更好。此外,HY-2A CMR产品在沿海地区的偏差更大,这都是由陆地或海冰造成的亮温(TB)污染引起的。从2011年10月到2014年3月,WTC / PWV偏差暂时增加,WTC的系统偏差超过1 cm,PWV的偏差超过2 mm,WTC的最大RMS值分别为4.62 cm和PWV的7.61 mm,于2013年8月出现。这是由于不合适的检索系数和来自37 GHz频带的系统性TB测量偏差。 2014年4月之后,结核病偏倚得到了纠正,HY-2A CMR产品从2014年4月到2017年5月与NWM非常一致,WTC的平均RMS为1.68 cm,PWV的平均RMS为2.65 mm。但是,自2017年6月以来,从18.7 GHz频段开始的TB测量变得不稳定,这导致HY-2A CMR产品与NWM之间存在巨大差异,WTC的平均RMS为2.62 cm,PWV的平均RMS为4.33 mm。当三个频段正常工作时,HY-2A CMR具有很高的准确性,因此急需对HY-2A CMR进行进一步校准。此外,使用了137个全球沿海探空站来验证HY-2A CMR。基于探空仪数据的验证显示,与ECMWF的结果相比,HY-2A CMR的时间变化趋势相同,从而验证了ECMWF的结果。

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