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21.
基于MHSS算法的ARAIM完好性和可用性预测   总被引:1,自引:0,他引:1  
传统的接收机自主完好性监视只能提供非精密进近阶段的完好性监视,无法实现对完好性要求更加严格的飞行阶段的监视,而高级接收机自主完好性监视(AdvancedReceiverAutonomousIntegrityMonitoring,ARAIM)可以在精密进近阶段为飞机提供满足航向信标性能垂直引导(LocalizerPerformancewithVerticalguidance,LPV)的完好性监视服务。文章基于多假设分组解算法,根据目前的星座环境,结合民航不同飞行阶段的应用需求,对ARAIM算法进行仿真研究。针对水平保护级(HorizontalProtectionLevel,HPL)和垂直保护级(VerticalProtectionLevel,VPL)的指标,在不同星座组合环境下,选取南北半球不同经纬度的5个观测机场,分别仿真了HPL和VPL的变化情况,并对全球HPL和VPL平均分布趋势,以及以99%的概率满足LPV-200进近可用性指标时,ARAIM可用性的全球覆盖率进行了仿真预测分析。仿真结果表明,不论是全球定位系统和格洛纳斯双星座还是增加北斗卫星导航系统后的三星座,5个观测机场的HPL和VPL均能满足LPV-200进近对完好性指标的要求;但在全球范围内,双星座条件下,ARAIM并不能完全支持LPV-200进近对完好性监视的要求,而三星座则可大大提高ARAIM的可用性,为民航用户提供满足精密进近的所需导航服务性能。  相似文献   
22.
A new strategy of precise orbit determination (POD) for GEO (Geostationary Earth Orbit) satellite using SATRE (SAtellite Time and Ranging Equipment) is presented. Two observation modes are proposed and different channels of the same instruments are used to construct different observation modes, one mode receiving time signals from their own station and the other mode receiving time signals from each other for two stations called pairs of combined observations. Using data from such a tracking network in China, the results for both modes are compared. The precise orbit determination for the Sino-1 satellite using the data from 6 June 2005 to 13 June 2005 has been carried out in this work. The RMS (Root-Mean-Square) of observing residuals for 3-day solutions with the former mode is better than 9.1 cm. The RMS of observing residuals for 3-day solutions with the latter mode is better than 4.8 cm, much better than the former mode. Orbital overlapping (3-day orbit solution with 1-day orbit overlap) tests show that the RMS of the orbit difference for the former mode is 0.16 m in the radial direction, 0.53 m in the along-track direction, 0.97 m in the cross-track direction and 1.12 m in the 3-dimension position and the RMS of the orbit difference for the latter mode is 0.36 m in the radial direction, 0.89 m in the along-track direction, 1.18 m in the cross-track direction and 1.52 m in the 3-dimension position, almost the same as the former mode. All the experiments indicate that a meter-level accuracy of orbit determination for geostationary satellite is achievable.  相似文献   
23.
高分辨率卫星遥感影像的几何定位精度与影像外方位元素精度密切相关.文章针对单景影像直接对地定位和立体影像前方交会定位两种典型情况,对影像各外方位元素在目标几何定位中的误差传播规律进行分析比较,相关结论可供卫星姿控及相机载荷设计方参考.  相似文献   
24.
Electron density distribution is the major determining parameter of the ionosphere. Computerized Ionospheric Tomography (CIT) is a method to reconstruct ionospheric electron density image by computing Total Electron Content (TEC) values from the recorded Global Positioning Satellite System (GPS) signals. Due to the multi-scale variability of the ionosphere and inherent biases and errors in the computation of TEC, CIT constitutes an underdetermined ill-posed inverse problem. In this study, a novel Singular Value Decomposition (SVD) based CIT reconstruction technique is proposed for the imaging of electron density in both space (latitude, longitude, altitude) and time. The underlying model is obtained from International Reference Ionosphere (IRI) and the necessary measurements are obtained from earth based and satellite based GPS recordings. Based on the IRI-2007 model, a basis is formed by SVD for the required location and the time of interest. Selecting the first few basis vectors corresponding to the most significant singular values, the 3-D CIT is formulated as a weighted least squares estimation problem of the basis coefficients. By providing significant regularization to the tomographic inversion problem with limited projections, the proposed technique provides robust and reliable 3-D reconstructions of ionospheric electron density.  相似文献   
25.
反向定位系统是针对驻留型同温层气球平台的一种新型定位系统 ,该系统的基本原理是由接收站的位置计算得出发射机的位置。文章采用卡尔曼滤波的方法 ,建立了反向定位系统的模型 ,给出其滤波算法 ;鉴于地面接收站的位置选择对该系统的定位精度有较大的影响 ,给出地面站选址依据 ,并通过计算、仿真获得一组较为理想的布站方式。此外 ,钟差是系统的一个主要误差源 ,文中对其引起的定位误差进行了分析 ,并给出估算的方法 ;对系统中的传播误差、设备误差也进行了分析。最后 ,对系统建立了仿真模型进行仿真。结果表明 ,该定位系统具有较好的定位精度  相似文献   
26.
卫星导航定位方程的病态条件   总被引:2,自引:0,他引:2  
定位精度因子(PDOP)上限取值是导航星座设计及其性能评价的基本依据。本文系统地论述卫星导航定位方程及其精度评定算法以及线性方程病态条件,通过实测和仿真数值试验结果对比分析,详细论证PDOP与卫星导航定位方程病态条件的关系,进而确定PDOP上限取值,以满足实际工程应用需求。  相似文献   
27.
Single-frequency precise point positioning (SF-PPP) has attracted increasing attention due to its high precision and cost effectiveness. With various strategies to handle the dominant error, i.e., ionosphere delay, the ionosphere-float (IF), ionosphere-free-half (IFH), ionosphere-corrected (IC), and ionosphere-weighted (IW) SF-PPP models are certain to possess different characteristics and performance levels. This study is dedicated to assessing and comparing the four models from model characteristics, positioning performance, and atmosphere delay retrieval. The model comparison shows that IC and IW models are full-rank while IF and IFH models have a rank deficiency of size one that will result in biased estimations, which means the better solvability of IC and IW models. The experiments are carried out based on the 7-day Global Positioning System (GPS) observations collected at 57 global Multi-GNSS Experiment (MGEX) stations and Global Ionosphere Map (GIM) products. The results indicate that the IW model can accelerate SF-PPP convergence and achieve higher positioning accuracy compared to the other three SF-PPP models, especially in kinematic mode. With convergence criteria of 0.25 m in horizontal and 0.5 m in vertical, the east/north/up convergence times of IW model are 0.5/15.0/25.0 min and 0.5/16.0/36.5 min for static and kinematic modes, respectively. The IW model is able to achieve an instantaneous positioning accuracy of 0.28/0.35/0.75 m. In addition, a real kinematic test also demonstrates the best positioning solutions of IW model. Regarding troposphere delay retrieval, the IF, IFH, and IW models obtain a comparable daily accuracy of 3.0 cm on average, while the IC model achieves the worst accuracy of 8.0 cm. For precise ionosphere delay estimation, IW model only needs an average initialization time of 34.3 min, but a longer initialization time of 51.6 min is required for IF model. The daily precision of ionosphere delay estimation for IW model can reach up to 10.8 cm. At the present accuracy of GIM products, it is suggested that the IW model should be adopted for SF-PPP first due to its superior performance in positioning and atmosphere delay retrieval.  相似文献   
28.
梁坤  施浒立 《宇航学报》2007,28(3):571-575
精确的码相位测量是保证GPS接收机得到精确伪距值进而进行精确定位的一个重要前提。在已有码相位测量精化方法的基础之上提出了两种新的码相位测量精化的方法,讲述了两种方法的原理与具体实现方法,并利用蒙特卡洛方法进行了仿真实验,得到了码相位结果均值、码相位结果均值方差等一系列实验结果,对几种方法的精化效果从精确性、稳定性和跟踪性能等几个方面进行了比较分析,得出了相应的结论。与三角匹配法和二次曲线插值精化法相比,二阶最小二乘拟合精化法和广义延拓逼近精化法有明显优势;广义延拓逼近精化法的精化精度最高、跟踪精度最高,而二阶最小二乘拟合精化法的稳定性最好。  相似文献   
29.
一种用星敏感器自主定位方法的精度分析   总被引:5,自引:0,他引:5  
利用星敏感器和地平仪测量星光与地平之间的“星光仰角”作为观测量 ,提出用推广卡尔曼滤波方法来实时估计航天器的最佳位置的自主定位方法 ,通过仿真实验 ,分析比较了“星敏感器精度”、“采样周期”、“恒星导航星的个数”以及“星敏感器安装方位角”等诸因素对航天器定位精度的影响 ,同时总结其变化规律 ,可用于提高航天器自主定位精度  相似文献   
30.
导航星全球定位系统及其应用   总被引:2,自引:0,他引:2  
翟昌继 《上海航天》2000,17(2):52-56,62
较详细地介绍了导航星全球定位系统(GPS)的组成、功能和发展过程。对该系统的导航定位原理、方法、精度度量方法,以及影响导航定位精度的误差进行了分析。全球定位系统是一个具有巨大的发展潜力和深透能力的系统,它的应用范围已超出了其原来的设计要求。最后还介绍了导航星全球定位系统的应用情况。  相似文献   
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