期刊文献+

一种基于遗传算法和BP神经网络的对流层延迟改正模型 被引量:9

A tropospheric delay correction model based on genetic algorithm and BP neural network
在线阅读 下载PDF
导出
摘要 对流层延迟是影响全球卫星导航系统定位精度的主要因素之一。针对全球气象数据建立的对流层延迟改正模型区域精度较低这一问题,文中基于遗传算法和BP神经网络技术,在EGNOS模型基础上建立一个高精度的区域融合模型(GA-BPEGNOS模型)。选取北美洲2010—2014年41个观测站点,以国际GNSS服务中心的对流层产品作为真值,分析比较EGNOS模型和融合模型的对流层天顶延迟。研究表明,EGNOS模型的均方根误差为80.38mm,融合模型的均方根误差为34.44 mm。与EGNOS模型相比,融合模型的精度提高约57%,取得满意效果。 Tropospheric delay is one of the main factors that affect the accuracy of Global Navigation Satellite System. Aiming at the low accuracy of the tropospheric delay correction model region established by using the global meteorological data,based on the genetic algorithm and BP neural network technique,a high-precision regional fusion model( GA-BPEGNOS model) is established on the basis of EGNOS model. By selecting 41 observation sites in North America from 2010 to 2014 and taking the zenith tropospheric delay data provided by the International GNSS Service as the true value,this paper compares the tropospheric zenith delay value calculated by EGNOS model and fusion model. The result shows that the root mean square error of EGNOS model is 80. 38 mm and the root mean square error of fusion model is 34. 44 mm. Compared with the EGNOS model,the accuracy of the fusion model is improved by about 57% and good result is obtained.
作者 陈阳 胡伍生 CHEN Yang, HU Wusheng(School of Transportation,Southeast University, Nanjing 210096,Chin)
出处 《测绘工程》 CSCD 2018年第3期46-52,共7页 Engineering of Surveying and Mapping
基金 国家自然科学基金资助项目(41574022 41274028 41674035)
关键词 EGNOS模型 融合模型 遗传算法 BP神经网络 对流层延迟 EGNOS model fusion model genetic algorithm BP neural network tropospheric delay
  • 相关文献

参考文献9

二级参考文献47

  • 1陶本藻,许海威.大范围GPS水准拟合模型误差的平差补偿[J].测绘通报,2005(7):8-10. 被引量:13
  • 2李明峰,於宗俦,李延兴,于正林.动态平差概括模型与假设检验[J].武汉测绘科技大学学报,1995,20(3):234-239. 被引量:3
  • 3殷海涛,黄丁发,熊永良,王贵文.GPS信号对流层延迟改正新模型研究[J].武汉大学学报(信息科学版),2007,32(5):454-457. 被引量:44
  • 4Collins J P, Langley R B. A tropospheric delay model for the user of the Wide Area Augmentation System. In: Final Contract Report for Nav Canada, Department of Geodesy and Geomatics Engineering Technical Report No. 187, University of New Brunswick, Fredericton, N B, Canada. 1997.
  • 5Collins J P, Langley R B. The Residual Tropospheric Propagation Delay: How Bad Can It Get? In: ION GPS 1998, September 15-18, Nashville, Tennessee, USA, 1998. 729-738.
  • 6RTCA/DO-229C. Minimum Operational Performance Standards for Global Positioning System/Wide Area Augmentation System Airborne Equipment. SC-169, RTCA, Inc., Washington DC, 2001.
  • 7Dodson A H, Chen W, Baker H C, et al. Assessment of EGNOS tropospheric correction model. In: ION GPS 1999, September 14-17, Nashville, Tennessee, USA, 1999. 1401-1407.
  • 8Penna, N, Dodson A, Chen W. Assessment of EGNOS tropospheric correction model. J Navig, 2001, 54: 37-55.
  • 9Uemo M, Hoshinoo K, Matsunaga K, et al. Assessment of atmospheric delay correction models for the Japanese MSAS. In: ION GPS2001, September 11-14, Salt Lake City, Utah, USA, 2001. 2341-2350.
  • 10Leandro R F, Santos M C, Langley R B. UNB neutral atmosphere models: Development and performance. In: ION NTM 2006, January 18-20, Monterey, California, USA, 2006. 564-573.

共引文献183

同被引文献117

引证文献9

二级引证文献30

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部