会议专题

Evaluation of Kinematic Airborne GPS Data Processing Using Precise Point Positioning Approach

The airborne GPS receiver is used to get the position information of an aircraft in the calibration flight test of radars. The position information is obtained by the carrier phase differential GPS techniques (CDGPS),which needs a network of GPS receivers as reference stations. Usually at least two GPS receivers are needed to get position information of decimeter level precision. In order to evaluate the precision of positioning only based on the data of single airborne GPS receiver,a postprocessing approach using precise point positioning (PPP) techniques is developed. The algorithm only needs zero differenced dual-frequency pseudo-range and phase observations of the airborne GPS receiver to work,along with the precise orbit products of International GNSS Service (IGS) or the observation data of IGS stations. Two kinds of alternative Kalman filters based on white noise model and current statistic model respectively,are used in the algorithm and compared in this paper. The results from the simulation data of the flight test scheme demonstrate that,the two filters can get similar results to each other and both of them can achieve equivalent precision to the traditional CDGPS techniques. The results mean that the network of reference GPS stations is unnecessary if the postprocessing PPP algorithm is used.

Global Positioning System Precise Point Positioning Current Statistic Model

TU Xianqin MENG Qinghai YI Dongyun ZHOU Haiyin

College of Science National University of Defense Technology Changsha,China The PLA Unit 91550,China The PLA Unit 91550,China College of Science National University of Defense Technology Changsha,China

国际会议

2012 International Conference on Computer Science and Electronic Engineering(2012 IEEE计算机科学与电子工程国际会议 ICCSEE 2012)

杭州

英文

63-68

2012-03-23(万方平台首次上网日期,不代表论文的发表时间)