Statistical Comparison of Various Interpolation Algorithms for Grid- Based Single Shell Ionospheric Model over Indian Region

A. Shukla, Neha Nagori, Saurabh Das, Nishkam Jain, M. Sivaraman, K. Bandyopadhyay
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引用次数: 7

Abstract

Future Satellite Based Navigation Systems based on GPS, like US Wide Area Augmentation Sysytem (WAAS), are of global interest to the scientific community. Precise estimation of ionospheric delay is most crucial for successful implementation of the systems. Due to the complex ionospheric structure and large variation of Total Electron Content (TEC) in low latitudes, it is necessary to compare and validate the efficiency of the existing algorithms in this region. In this study, performances of the various interpolation algorithms for TEC calculation at ionospheric grid point (IGP) and user position for gridbased Single Shell Model have been tested for 72 test days of 2005. Based on the results obtained from this analysis, it has been found that, for the Indian region, it would be more suitable to use Ordinary Kriging in place of Planar Fit to estimate delay at an IGP (as used by US WAAS). It has also been found that Ordinary Kriging performs better than the Bilinear Interpolation technique at the user end.
基于网格的印度地区单壳电离层模型各种插值算法的统计比较
基于GPS的未来卫星导航系统,如美国广域增强系统(WAAS),是全球科学界关注的焦点。电离层延迟的精确估计对系统的成功实施至关重要。由于低纬度地区电离层结构复杂,总电子含量(TEC)变化大,有必要对现有算法在该地区的有效性进行比较和验证。本研究对基于网格的单壳模型电离层网格点(IGP)和用户位置的TEC计算的各种插值算法的性能进行了2005年72个试验天的测试。根据分析结果发现,对于印度地区,使用普通克里格代替平面拟合来估计IGP的延迟(如美国WAAS所使用的)将更合适。在用户端也发现普通克里格比双线性插值技术表现得更好。
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