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-  2018 

全球电离层模型的OpenMP多线程并行解算
Multithreaded Parallel Estimation for Global Ionospheric Model by Using OpenMP

DOI: 10.13203/j.whugis20150223

Keywords: 全球电离层模型,球谐函数,总电子含量,OpenMP,多线程,
global ionospheric model
,spherical harmonics function,total electron content,OpenMP,multithreaded

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Abstract:

探讨了OpenMP多线程技术在全球电离层建模中的应用。在日固地磁参考系下采用15阶次的球谐展开建立全球电离层模型,并对1天解、3天解两种方案的结果与IGS电离层产品进行了对比,电离层图偏差的均方根约3~5 TECU,且3天解的方案首尾两组电离层图与IGS产品符合得更好;卫星差分码偏差和接收机差分码偏差与IGS的差异分别约为0.2 ns和2 ns,仅有少数几个接收机差分码偏差在少数几天与IGS差异较大,超过3~4 ns。实验中使用Dell服务器R730(配置:128 GB内存、2个CPU、8个核心和32个线程数),采用OpenMP多线程并行计算能够明显提高全球电离层模型的建模效率,单天解算仅需约7 min,3天解算需约22 min,效率提升近8倍。使用3 d观测数据并采用OpenMP多线程并行计算来建立全球电离层模型可有效节省建模时间,同时还能提高首尾两组模型系数的精度以进一步提升全球电离层模型的精度,对建模算法的测试、电离层产品的快速发布以及模型后续检验和预测等带来了便利,也为后续实现利用多卫星导航系统观测数据快速建立全球电离层模型提供了参考

References

[1]  Li Zishen. Study on the Mitigation of Ionospheric Delay and the Monitoring of Global Ionospheric TEC Based on GNSS/Compass[D]. Beijing:University of Chinese Academy of Sciences, 2012(李子申. GNSS/Compass电离层时延修正及TEC监测理论与方法研究[D]. 北京:中国科学院大学,2012)
[2]  Wang Gang, Wei Ziqing. A Method and Results of Setting up Grid Ionospheric Delay Model[J]. <em>Bulletin of Surveying and Mapping</em>, 2009(9):1-2(王刚,魏子卿. 格网电离层延迟模型的建立方法与试算结果[J]. 测绘通报,2000(9):1-2)
[3]  Yuan Yunbin, Ou Jikun. Preliminary Results and Analysis of Global Ionospheric TEC by GPS Measurements from IGS[J]. <em>Progress in Natural Science</em>, 2003, 13(8):885-888(袁运斌, 欧吉坤. 利用IGS的GPS资料确定全球电离层TEC的初步结果与分析[J]. 自然科学进展, 2003, 13(8):885-888)
[4]  Zhang Qiang, Zhang Hongping, Zhao Qile, et al. Global Ionospheric TEC Prediction Based on Least-Square Collocation Method[J]. <em>Journal of Geodesy and Geodynamics</em>, 2014, 34(6):86-91(张强, 章红平, 赵齐乐, 等. 利用最小二乘配置预报全球电离层总电子含量[J]. 大地测量与地球动力学, 2014, 34(6):86-91)
[5]  Dang Yamin, Wang Hu, Zhao Wenjiao, et al. Research of the Characteristics of Inversing Global Io-nospheric with Fusing of BDS, GPS and GLONASS[J]. <em>Journal of Geodesy and Geodynamics</em>, 2015, 35(1):87-91(党亚民, 王虎, 赵文娇, 等. 融合BDS/GPS/GLONASS反演全球电离层特性研究[J]. 大地测量与地球动力学, 2015, 35(1):87-91)
[6]  Gao Guanghui, Wang Xiaoya, Wu Bin. Global Ionospheric Modeling Using GPS Data with Prallel Algorithms[J]. <em>Annual of Shanghai Astronomical Observatory, CAS</em>, 2011, 32:35-44(高广辉,王小亚,吴斌. GPS全球电离层TEC的并行算法建模及初步结果分析[J]. 中国科学院上海天文台年刊,2011,32:35-44)
[7]  Luo Qiuming. Compilation Principle and Implementation Technology of OpenMP[M]. Beijing:Tsinghua University Press, 2012(罗秋明. OpenMP编译原理及实现技术[M]. 北京:清华大学出版社,2012)
[8]  Global Ionosphere Maps Produced by CODE[EB/OL]. http://aiuws.unibe.ch/ionosphere, 2012
[9]  Hernandez-Pajares M, Juan J M, Sanz J, et al. The IGS VTEC Maps:A Reliable Source of Ionospheric Information Since 1998[J]. <em>J Geod,2008</em>, 83:263-275
[10]  Gen Changjiang. Theory and Method on Real Time Monitoring of Ionospheric Delay Using Ground Based GNSS Data[D]. Wuhan:Wuhan University, 2011(耿长江. 利用地基GNSS数据实时监测电离层延迟理论与方法研究[D]. 武汉:武汉大学,2011)
[11]  Chen Peng, Chen Jiajun. Global Ionospheric Grid Modeling Using GNSS and Space-Based Observations[C]. China Satellite Navigation Conference (CSNC) 2013 Proceedings, Wuhan,2013(陈鹏, 陈家君. 多源数据融合的全球电离层格网模型建立[C]. 第四届中国卫星导航学术年会,武汉,2013)
[12]  Zhang Hongping, Han Wenhui, Huang Ling, et al. Modeling Global Ionospheric Delay with IGS Ground-Based GNSS Observations[J]. <em>Geomatics and Information Science of Wuhan University</em>, 2012, 37(10):1186-1189(章红平, 韩文慧, 黄玲, 等. 地基GNSS全球电离层延迟建模[J]. 武汉大学学报·信息科学版, 2012, 37(10):1186-1189)
[13]  Wang Cheng, Wang Jiexian, Duan bingbing. Global Ionospheric Model with International Reference Ionosphere Constraint[J]. <em>Geomatics and Information Science of Wuhan University</em>, 2014,39(11):1340-1346(王成,王解先,段兵兵.附有国际参考电离层约束的全球电离层模型[J].武汉大学学报·信息科学版,2014,39(11):1340-1346)
[14]  Yuan Yunbin. Study on Theories and Methods of Correcting Ionospheric Delay and Monitoring Ionosphere Based on GPS[D]. Wuhan:Institute of Geo-desy and Geophysics, Chinese Academy of Sciences, 2002(袁运斌. 基于GPS的电离层监测及延迟改正理论与方法的研究[D].武汉:中国科学院测量与地球物理研究所,2002)
[15]  Yuan Yunbin, Ou Jikun. Ionospheric Delay Model Using Generalized Trigonometric Series Function[J]. <em>Progress in Natural Science </em>, 2005, 15(8):1015-1019(袁运斌,欧吉坤. 广义三角级数函数电离层延迟模型[J]. 自然科学进展,2005,15(8):1015-1019)
[16]  Liu Jingbin, Wang Zemin, Wang Haijun, et al. Modeling Regional Ionosphere Using GPS Measurements over China by Spherical Cap Harmonic Analysis Methodology[J]. <em>Geomatics and Information Science of Wuhan University</em>,2008,33(8):792-795, 814(柳景斌,王泽民,王海军,等. 利用球冠谐分析方法和GPS数据建立中国区域电离层TEC模型[J]. 武汉大学学报·信息科学版,2008,33(8):792-795, 814)
[17]  Schaer S. GNSS Inosphere Analysis at CODE[C]. 2004 IGS Workshop, Berne, Switzerland, 2004
[18]  Li Zhenghang, Zhang Xiaohong. New Techniques and Precise Data Processing Methods of Satellite Navigation and Positioning[M]. Wuhan:Wuhan University Press, 2009(李征航,张小红. 卫星导航定位新技术及高精度数据处理方法[M]. 武汉:武汉大学出版社,2009)
[19]  Zhang Hongping. Study on Monitoring Ionosphere and Correcting Ionospheric Delay in China by Ground-Based GPS[D]. Shanghai:Shanghai Astronomic Observatory, Chinese Academy of Sciences,2006(章红平. 基于地基GPS的中国区域电离层监测与延迟改正研究[D]. 上海:中国科学院上海天文台,2006)
[20]  Zhang Hongping, Shi Chuang, Tang Weiming. United Solution to Polynomial VTEC Modeling and DCB Analysis Using Ground-based GPS Observations[J]. <em>Geomatics and Information Science of Wuhan University</em>, 2008, 33(8):805-809(章红平,施闯,唐卫明. 地基GPS区域电离层多项式模型与硬件延迟统一解算分析[J]. 武汉大学学报·信息科学版,2008,33(8):805-809)

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