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Monitoring Aircraft Position Using EGNOS Data for the SBAS APV Approach to the Landing Procedure

机译:使用EGNOS数据监控SBAS APV着陆程序的飞机位置

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摘要

The aim of this paper is to present the problem of the implementation of the EGNOS (European Geostationary Navigation Overlay Service) data for the processing of aircraft position determination. The main aim of the research is to develop a new computational strategy which might improve the performance of the EGNOS system in aviation, based on navigation solutions of an aircraft position, using several GNSS (Global Navigation Satellite System) onboard receivers. The results of an experimental test conducted by the Cessna 172 at EPDE (European Poland Deblin) (ICAO (International Civil Aviation Organization) code, N51°33.07’/E21°53.52’) aerodrome in Dęblin are presented and discussed in this paper. Two GNSS navigation receivers with the EGNOS positioning function for monitoring changes in the parameters of the aircraft position in real time during the landing phase were installed onboard a Cessna 172. Based on obtained research findings, it was discovered that the positioning accuracy was not higher than 2.1 m, and the integrity of positioning did not exceed 19 m. Moreover, the availability parameter was found to equal 1 (or 100%); also, no intervals in the continuity of the operation of the EGNOS system were recorded. In the paper, the results of the air test from Dęblin were compared with the parameters of positioning quality from the air test conducted in Chełm (ICAO code: EPCD, N51°04’57.8” E23°26’15”). In the air test in Chełm, the obtained parameters of EGNOS quality positioning were: better than 4.9 m for accuracy, less than 35.5 m for integrity, 100% for availability, and no breaks in continuity. Based on the results of the air tests in Dęblin and Chełm, it was concluded that the parameters of the EGNOS positioning quality in aviation for the SBAS (Satellite Based Augmentation System) APV (Approach to Vertical guidance) procedure were satisfied in accordance with the ICAO (International Civil Aviation Organization) requirements. The presented research method can be utilized in the SBAS APV landing procedure in Polish aviation. In this paper, the results of PDOP (Position Dilution of Precision) are presented and compared to the two air tests in Dęblin and Chełm. The maximum results of PDOP amounted to 1.4 in the air test in Dęblin, whereas they equaled 4.0 in the air test in Chełm. The paper also shows how the EGNOS system improved the aircraft position in relation to the only GPS solution. In this context, the EGNOS system improved the aircraft position from about 78% to 95% for each ellipsoidal coordinate axis.
机译:本文的目的是提出用于处理飞机位置确定的EGNOS(欧洲对地静止导航叠加服务)数据的实施问题。该研究的主要目的是开发一种新的计算策略,该方法可以使用多个GNSS(全球导航卫星系统)机载接收器,基于飞机位置的导航解决方案来改善航空EGNOS系统的性能。本文介绍并讨论了塞斯纳172号在登布林EPDE(欧洲波兰Deblin)(ICAO(国际民航组织)代码N51°33.07′/ E21°53.52′)机场进行的实验测试结果。在塞斯纳172飞机上安装了两个具有EGNOS定位功能的GNSS导航接收器,用于实时监测着陆阶段飞机位置参数的变化。根据获得的研究结果,发现定位精度不高于2.1 m,定位的完整性不超过19 m。此外,发现可用性参数等于1(或100%);而且,没有记录到EGNOS系统的连续性运行的间隔。在本文中,将登布林的空中测试结果与在切乌姆(ICAO代码:EPCD,N51°04’57.8” E23°26’15”)进行的空中测试的定位质量参数进行了比较。在Chełm的空中测试中,获得的EGNOS质量定位参数为:精度优于4.9 m,完整性小于35.5 m,可用性为100%,并且连续性不中断。根据在登布林和切乌姆进行的空中测试的结果,得出的结论是,根据国际民航组织的规定,满足了SBAS(基于卫星的增强系统)APV(垂直引导方法)程序的航空EGNOS定位质量参数(国际民航组织)的要求。所提出的研究方法可用于波兰航空的SBAS APV着陆程序中。本文介绍了PDOP(精确位置稀释)的结果,并将其与登布林和切乌姆的两个空气测试进行了比较。在登布林的空中测试中,PDOP的最高结果为1.4,而在契乌姆的空中测试中,其最高结果为4.0。本文还展示了EGNOS系统如何相对于唯一的GPS解决方案改善了飞机的位置。在这种情况下,EGNOS系统将每个椭圆坐标轴的飞机位置从大约78%提高到95%。

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