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Tropospheric wet refractivity tomography using multiplicative algebraic reconstruction technique
Authors:Wang Xiaoying  Dai Ziqiang  Zhang Enhong  KE Fuyang  Cao Yunchang  Song Lianchun
Institution:1. School of Remote Sensing, Nanjing University of Information Science & Technology, Nanjing 210044, China;2. Jiangsu Key Laboratory of Meteorological Observation and Information Processing, Nanjing University of Information Science and Technology, Nanjing 210044, China;3. The 28th Research Institute, China Electronics Technology Group Corporation, Nanjing 210007, China;4. Information Center of Guangdong Provincial Meteorological Bureau, Guangzhou 510080, China;5. CMA Key Laboratory for Aerosol-Cloud-Precipitation, Nanjing University of Information Science and Technology, Nanjing 210044, China;6. Meteorological Observation Center, China Meteorological Administration, Beijing 100081, China;g National Climate Center, China Meteorological Administration, Beijing 100081, China
Abstract:Algebraic reconstruction techniques (ART) have been successfully used to reconstruct the total electron content (TEC) of the ionosphere and in recent years be tentatively used in tropospheric wet refractivity and water vapor tomography in the ground-based GNSS technology. The previous research on ART used in tropospheric water vapor tomography focused on the convergence and relaxation parameters for various algebraic reconstruction techniques and rarely discussed the impact of Gaussian constraints and initial field on the iteration results. The existing accuracy evaluation parameters calculated from slant wet delay can only evaluate the resultant precision of the voxels penetrated by slant paths and cannot evaluate that of the voxels not penetrated by any slant path. The paper proposes two new statistical parameters Bias and RMS, calculated from wet refractivity of the total voxels, to improve the deficiencies of existing evaluation parameters and then discusses the effect of the Gaussian constraints and initial field on the convergence and tomography results in multiplicative algebraic reconstruction technique (MART) to reconstruct the 4D tropospheric wet refractivity field using simulation method.
Keywords:Algebraic reconstruction techniques (ART)  Wet refractivity tomography  Ground-based GNSS  Slant wet delay (SWD)
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