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基于准载波相位差分技术的地基增强系统机载定位精度性能研究 被引量:2

Research on Airborne Positioning Accuracy Performance of GBAS Based on RTK
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摘要 地基增强系统(ground-based augmentation systems,GBAS)中机载导航定位精度和精度可靠性关系到飞机和人员的生命财产安全。因此,提出了在GBAS中使用以准载波相位差分技术(real-time kinematic,RTK)为差分方式减小潜在误差影响的方法。RTK利用了参考站和移动站之间观测误差的空间相关性,通过差分的方式消除了移动站观测数据中的大部分误差。与传统的差分方式相比,RTK具有更大的技术优势。通过实验验证和数据仿真结果表明:该方案的单频准RTK可实现分米级甚至厘米的高精度定位,能够为飞机的进近提供精密和稳定的导航数据,同时为机场实现GBAS CAT Ⅱ/Ⅲ类精密进近服务起到积极地促进作用。 Ground based augmentation system( GBAS) in the navigation positioning accuracy and precision of reliability related to the safety of the aircraft and people life and property. Therefore,the method of using quasi carrier phase difference( real-time kinematic,RTK) in the GBAS to reduce the potential error is proposed. RTK eliminates the most errors in the observation data of the mobile station by the way of difference,based on the spatial correlation of the observation error between the reference station and the mobile station. And compared with the traditional finite difference method,RTK has more advantages. Results of through experimental verification and data simulation show: The scheme of single frequency quasi RTK can achieve high precision positioning even centimeter decimeter,and able to provide accurate and stable navigation data for aircraft approaching. At the same time for the airport to achieve GBAS CAT class Ⅱ/Ⅲ precision access services play a positive role in promoting.
出处 《科学技术与工程》 北大核心 2017年第23期103-107,共5页 Science Technology and Engineering
基金 国家自然科学基金(60939002 61151002 U1433115) 中航工业产学研协同创新专项(CXY2012SH16) 中国航天科技集团公司卫星应用科研创新基金(2014_CXJJ-TX_12)资助
关键词 地基增强系统 机载定位精度 准载波相位差分 精密进近 Ⅱ/Ⅲ类安全等级 GBAS airborne positioning precision RTK precision approach CAT Ⅱ/Ⅲ
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  • 1薛瑞,张军,朱衍波.Cascade Dual Frequency Smoothing for Local Area Augmentation System[J].Chinese Journal of Aeronautics,2009,22(1):49-55. 被引量:6
  • 2张小红,鄂栋臣.用PPP技术确定南极Amery冰架的三维运动速度[J].武汉大学学报(信息科学版),2005,30(10):909-912. 被引量:22
  • 3杨文辉,周保军.LAAS地面系统中多基准一致性检测算法的分析[J].电子学报,2006,34(3):469-471. 被引量:15
  • 4Gang Xie, et al.. Integrity design and updated test results for the Stanford LAAS integrity monitor tested [A]. ION 57 thAnnual Meeting/CIGTF 20th Biennial Guidance Test Symposium[C]. Albuquerque, NM: The Institute of Navigation, America, 2001-06-11: 681-693.
  • 5Specification: Category I Local Area Augmentation System Non-Federal Ground Facility. U.S. Federal Aviation Administration, Washington, D.C., FAA/AND710-2937, May31, 2001.
  • 6RTCA Inc., Minimum Aviation System Performance Standards for The Local Area Augmentation System(LAAS) , RTCA/DO-245, 28 September 1998: 51-55. E-16, 17/32-46.
  • 7Specification: Performance Type One Local Area Augmentation System Ground Facility. U.S.Federal Aviation Administration, Washington, D.C., FAA-E-2937, Sept. 21, 1999. Internet:http://gps.faa.gov/Libr ary/Documents/laas _ faa2937.pdf.
  • 8Van Dyke K L. DOT/Volpe Center. The world after SA: benefits to GPS integrity Position Location and Navigation Symposium, USA, IEEE 2000: 387-394.
  • 9FENG Y, LIB. A Benefit of Multiple Carrier GNSS Signals: Regional Scale Network-based RTK with Doubled Inter station Distances[J]. Spatial Science, 2008, 53(2) 135-147.
  • 10FENG Y, RIZOS C, HIGGINS M, et al. Developing Regional Precise Positioning Services Using the Current and Future GNSS Receivers[C]// Proceedings of Spatial Sciences Institute Biennial International Conference, Adelaide: [s. n. ],2009.

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