- 相關推薦
A New Optimal Hatch Filter to Minimize the Effects of Ionosphere Gradients for GBAS
At present, the main problem faced by ground-based augment system (GBAS) is that though carrier smoothing filter and local differential global positioning system (LDGPS) improve the accuracy of the pseudorange by reducing the noise in it and eliminating almost all the common errors between the user and the reference station, they also cause extra errors on account of the effects of the ionosphere temporal and spatial gradients. Based on the analysis of these errors as well as the smoothing noise, this article suggests a new algorithm to design the optimal Hatch filter, whose smoothing window width varies real-time with the satellite elevation, ionosphere variation, and distance from the user to the reference station. By conducting the positioning process in the GBAS emulation platform for several hours and after its comparison with the performances of traditional Hatch filters, it is found that the errors in the differential correction become smaller and the positioning accuracy gets heightened with this new method.
作 者: Huang Zhenggang Huang Zhigang Zhu Yanbo 作者單位: School of Electronic Information Engineering, Beijing University of Aeronautics and Astronautics, Beijing 100191, China 刊 名: 中國航空學報(英文版) ISTIC 英文刊名: CHINESE JOURNAL OF AERONAUTICS 年,卷(期): 2008 21(6) 分類號: V2 關鍵詞: Hatch filter optimize ionosphere temporal gradient spatial gradient differential correction GBAS【A New Optimal Hatch Filter to Minimi】相關文章:
Rapid Optimal Generation Algorithm for Terrain Following Trajectory Based on Optimal Control04-27
Comparison of robust H∞ filter and Kalman filter for initial alignment of inertial navigation system04-27
Removal of Low Concentration Toluene Vapor in a Biotrickling Filter04-26
Analysis of realizable rational decimated nonuniform filter banks with dire04-26
初中英語作文:A New Jacket,A New Jacket范文08-09
Optimal error bound of restricted Monte Carlo integration on anisotropic Sobolev classes04-26