首页> 外文期刊>Selected Topics in Applied Earth Observations and Remote Sensing, IEEE Journal of >An Improved Adaptive Regularization Method for Forward Looking Azimuth Super-Resolution of a Dual-Frequency Polarized Scatterometer
【24h】

An Improved Adaptive Regularization Method for Forward Looking Azimuth Super-Resolution of a Dual-Frequency Polarized Scatterometer

机译:一种改进的自适应正则化方法,用于双频极化散射仪的前视方位角超分辨率

获取原文
获取原文并翻译 | 示例
           

摘要

Dual-frequency polarized scatterometer (DFPSCAT) is a pencil-beam rotating scatterometer which is designed for snow water equivalent (SWE) measurement, and Doppler beam sharpening (DBS) technique is proposed for DFPSCAT to achieve the azimuth resolution. However, the DBS technique is inapplicable for the forward-looking and afterward-looking regions. Based on an approximate aperiodic model of scatterometer echo signal, an improved adaptive regularization deconvolution algorithm with gradient histogram preservation (GHP) constraint is implemented to settle the problem. To investigate its performance of resolution enhancement and resulted accuracy, both a synthetic backscattering coefficient ($sigma^{0}$) field reconstruction and SWE $sigma^{0}$ reconstruction are carried out. The results show that the proposed method can recover the truth signal and achieve azimuth resolution of 2 km with the designed scatterometer system, which is required by the SWE retrieval. Moreover, the relative errors of reconstructed $sigma^{0}$ are less than 0.5 dB that satisfy the accuracy requirement for SWE retrieval, and comparisons with observed results show that the error reduction is more than 0.03 dB. Meanwhile, a comparison between the proposed algorithm and some existing resolution enhancement methods is analyzed, which concludes that the proposed method can obtain a comparable resolution enhancement as $L_{1}$ method and has less noise. The technique is also verified with advanced scatterometer (ASCAT) scatterometer data.
机译:双频偏振散射仪(DFPSCAT)是一种笔形光束旋转散射仪,设计用于雪水当量(SWE)测量,并且为DFPSCAT提出了多普勒光束锐化(DBS)技术以实现方位角分辨率。但是,DBS技术不适用于前视和后视区域。基于散射仪回波信号的近似非周期性模型,实现了一种改进的带有梯度直方图保留(GHP)约束的自适应正则化反卷积算法,以解决该问题。为了研究其分辨率增强的性能和所得的准确性,同时进行了合成反向散射系数($ sigma ^ {0} $)场重构和SWE $ sigma ^ {0} $重构。结果表明,所提出的方法可以利用SWE检索所需的散射仪系统恢复真实信号并实现2 km的方位角分辨率。此外,重建的$ sigma ^ {0} $的相对误差小于0.5 dB,满足SWE检索的精度要求,并且与观察到的结果进行比较表明,误差减小大于0.03 dB。同时,通过对本文提出的算法与现有的几种分辨率增强方法进行比较分析,得出的结论是,该方法可以获得与$ L_ {1} $方法相当的分辨率增强效果,并且噪声较小。先进的散射仪(ASCAT)散射仪数据也验证了该技术。

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