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Earth rotation parameter and variation during 2005—2010 solved with LAGEOS SLR data 被引量:2
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作者 Shen Yi Guo Jinyun +2 位作者 Zhao Chunmei Yu Xuemin Li Jiulong 《Geodesy and Geodynamics》 2015年第1期55-60,共6页
Time series of Earth rotation parameters were estimated from range data measured by the satellite laser ranging technique to the Laser Geodynamics Satellites(LAGEOS)-1/2 through 2005 to 2010 using the dynamic method... Time series of Earth rotation parameters were estimated from range data measured by the satellite laser ranging technique to the Laser Geodynamics Satellites(LAGEOS)-1/2 through 2005 to 2010 using the dynamic method. Compared with Earth orientation parameter(EOP)C04, released by the International Earth Rotation and Reference Systems Service, the root mean square errors for the measured X and Y of polar motion(PM) and length of day(LOD)were 0.24 and 0.25 milliarcseconds(mas), and 0.068 milliseconds(ms), respectively.Compared with ILRSA EOP, the X and Y of PM and LOD were 0.27 and 0.30 mas, and 0.054 ms, respectively. The time series were analyzed using the wavelet transformation and least squares methods. Wavelet analysis showed obvious seasonal and interannual variations of LOD, and both annual and Chandler variations of PM; however, the annual variation could not be distinguished from the Chandler variation because the two frequencies were very close. The trends and periodic variations of LOD and PM were obtained in the least squares sense, and PM showed semi-annual, annual, and Chandler periods.Semi-annual, annual, and quasi-biennial cycles for LOD were also detected. The trend rates of PM in the X and Y directions were 3.17 and 1.60 mas per year, respectively, and the North Pole moved to 26.8E relative to the crust during 2005—2010. The trend rate of the LOD change was 0.028 ms per year. 展开更多
关键词 Geodesy Satellite laser range(SLR) earth rotation parameter(erp) Laser Geodynamics Satellites(LAGEOS) earth orientation paramete
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Prediction of earth rotation parameters based on improved weighted least squares and autoregressive model 被引量:9
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作者 Sun Zhangzhen Xu Tianhe 《Geodesy and Geodynamics》 2012年第3期57-64,共8页
In this paper, an improved weighted least squares (WLS), together with autoregressive (AR) model, is proposed to improve prediction accuracy of earth rotation parameters(ERP). Four weighting schemes are develope... In this paper, an improved weighted least squares (WLS), together with autoregressive (AR) model, is proposed to improve prediction accuracy of earth rotation parameters(ERP). Four weighting schemes are developed and the optimal power e for determination of the weight elements is studied. The results show that the improved WLS-AR model can improve the ERP prediction accuracy effectively, and for different prediction intervals of ERP, different weight scheme should be chosen. 展开更多
关键词 earth rotation parameters(erp PREDICTION autoregressive(AR) WEIGHTED least-square
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Earth Rotation Parameter Estimation by GPS Observations 被引量:6
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作者 YAO Yibin 《Geo-Spatial Information Science》 2006年第4期260-264,297,共6页
The methods of Earth rotation parameter (ERP) estimation based on IGS SINEX file of GPS solution are discussed in detail. There are two different ways to estimate ERP: one is the parameter transformation method, and t... The methods of Earth rotation parameter (ERP) estimation based on IGS SINEX file of GPS solution are discussed in detail. There are two different ways to estimate ERP: one is the parameter transformation method, and the other is direct adjustment method with restrictive conditions. By comparing the estimated results with independent copyright program to IERS results, the residual systemic error can be found in estimated ERP with GPS observations. 展开更多
关键词 earth rotation parameter parameter transformation systemic error daily SINEX file
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Change monitoring of earth rotation parameter with Maglev gyroscope precessional torque
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作者 YANG Zhi-qiang, GONG Yun, SHI Zhen, LI Yun Geological Engineering and Geomatics Institute, Chang’an University, Xi’an 710054, China 《中国有色金属学会会刊:英文版》 CSCD 2011年第S3期589-593,共5页
Through analyzing the relationship between gyro dynamic torques produced by the changes of earth rotation parameters (ERP), a method of measuring the earth rotation parameters was proposed and explored by using gyrosc... Through analyzing the relationship between gyro dynamic torques produced by the changes of earth rotation parameters (ERP), a method of measuring the earth rotation parameters was proposed and explored by using gyroscope. The preliminary experiments were carried out using GAT Maglev Gyro Station (which is self-developed by China). Considering the measurement and expanding-application of the earth rotation parameters, some ideas and opinions about the structure design, measurement methods and data processing of gyro were proposed, and some outlook of the expanding-application of the gyroscope in geodetic and geophysical fields were done. The experimental results show that using the high-precision gyroscope to determine the changes of ERP is feasible, with the emergence of ultra-high precision gyro; it is possible for determining the earth rotation parameters by gyro in stead of by current complex space surveying technology. 展开更多
关键词 MAGLEV GYROSCOPE earth rotation parameters (erp) precessional TORQUE POLE motion length of DAY
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Influence of the layered Moon and Earth’s orientation on lunar rotation
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作者 Yong-Zhang Yang Jin-Song Ping +1 位作者 Jian-Guo Yan Jin-Ling Li 《Research in Astronomy and Astrophysics》 SCIE CAS CSCD 2020年第2期45-52,共8页
One of the most efficient ways to probe the lunar inner structure at present is through the study of its rotation.Range and range rate(Doppler) data between the Chang’E-3 lander and station on the Earth were collecte... One of the most efficient ways to probe the lunar inner structure at present is through the study of its rotation.Range and range rate(Doppler) data between the Chang’E-3 lander and station on the Earth were collected from the beginning of the Chang’E-3 lunar mission in 2013.These observation data,taken together with the existing lunar laser ranging data,provide a new approach to extend research on the Earth-Moon system.The high precision of current observation data imposes exacting demands,making it necessary to include previously neglected factors.In this paper,motivated by progress of the Chinese lunar exploration project and to use its data in the near future,two lunar models:a one-layer model and a two-layer model with a fluid core,were applied to the rotational equations based on our implemented algorithm of the Moon’s motion.There was a difference of about 0.5′′in φ and ψ,but 0.2′′in θ between the two models.This result confirms that stratification of the inner structure of the Moon can be inferred from rotation data.We also added precise Earth rotation parameters in our model;the results show that this factor is negligible at present,due to the limited precision of the existing data.These results will help us understand the rotational process clearly and build a more realistic Earth-Moon model when we combine Lunar Laser Ranging data with high precision radio data to fit lunar motion in the near future. 展开更多
关键词 MOON rotation model numerical integration earth orientation parameters
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The deforming and rotating Earth——A review of the 18th International Symposium on Geodynamics and Earth Tide,Trieste 2016 被引量:2
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作者 Carla Braitenberg 《Geodesy and Geodynamics》 2018年第3期187-196,共10页
The 18th International Symposium on Geodynamics and Earth Tides 2016 covered phenomena that generate temporal variations in geodetic and geophysical observations. In calculating the stress field for Earth tides, the o... The 18th International Symposium on Geodynamics and Earth Tides 2016 covered phenomena that generate temporal variations in geodetic and geophysical observations. In calculating the stress field for Earth tides, the observed geodetic response is used for defining the Earth's theology, the Earth internal structure, 'Earth rotation parameters, and the functioning of the sophisticated instrumentation mounted on Earth and satellites. The instrumentation capable of observing Earth tides, measures changes generated by lithospheric plate movements, as the earthquake cycle and volcanism. Hydrology, tem- perature, and pressure, either of natural or anthropogenic origin, affect the high precision observations, and therefore must be included in this study-realm. 展开更多
关键词 GEODYNAMICS earth tides Geodetic observation earth rotation parameters GNSS
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GNSS广播ERP参数评估
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作者 张奋 阮仁桂 +2 位作者 贾小林 朱永兴 王龙 《全球定位系统》 CSCD 2024年第3期80-86,共7页
中国北斗卫星导航系统(BeiDou Navigation Satellite System,BDS)、美国GPS、日本准天顶卫星系统(Quasi-Zenith Satellite System,QZSS)、印度区域导航卫星系统(Indian Regional Navigation Satellite System,IRNSS)等系统在导航电文中... 中国北斗卫星导航系统(BeiDou Navigation Satellite System,BDS)、美国GPS、日本准天顶卫星系统(Quasi-Zenith Satellite System,QZSS)、印度区域导航卫星系统(Indian Regional Navigation Satellite System,IRNSS)等系统在导航电文中播发了地球自转参数(earth rotation parameter,ERP),即极移和世界时(Universal Time,UT)-协调世界时(Universal Time Coordinated,UTC)(ΔUT1).广播ERP主要用于需要在地球参考系和惯性参考系之间转换的GNSS星载应用,如卫星精密定轨、地月导航等.通过国际GNSS服务(International GNSS Service,IGS)收集了BDS、GPS、QZSS、IRNSS的广播ERP数据,评估了各GNSS的广播ERP不连续性,得到GPS和IRNSS的极移不连续性为0.9~1.4 mas,ΔUT1不连续性约为0.2 ms;QZSS的极移不连续性约为0.1 mas,ΔUT1不连续性约为0.02 ms;BDS的极移不连续性约为4.5 mas,ΔUT1不连续性约为1.3 ms.通过与国际地球自转和参考系服务(International Earth Rotation Service,IERS)14C04序列比较显示,QZSS极移误差约为0.6 mas,ΔUT1误差约为0.27 ms;GPS和IRNSS的极移误差约为2.4 mas,对于ΔUT1,GPS误差约为0.36 ms,IRNSS的ΔUT1误差相差较大,约为10.47 ms;由于更新间隔较长,BDS极移误差约为6 mas,ΔUT1误差约为1.2 ms;与GPS相比,BDS极移与ΔUT1误差分别差了近1.5倍和2.5倍. 展开更多
关键词 地球自转参数(erp) GNSS 极移 ΔUT1 不连续性 误差
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基于我国全球连续监测与评估系统的ERP测定的精度分析 被引量:1
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作者 何战科 李志刚 +1 位作者 杨旭海 程宗颐 《全球定位系统》 2010年第5期21-24,共4页
利用GPS观测资料解算地球自转参数,用全球均匀分布的22个IGS跟踪站(IGS05)的连续观测资料估计地球自转参数(ERP),并与IERS C04(UTC 0时)的结果相比较,二者相差很小,均在IERS的ERP估计精度范围之内。基于即将建成的COMPASS全球连续监测... 利用GPS观测资料解算地球自转参数,用全球均匀分布的22个IGS跟踪站(IGS05)的连续观测资料估计地球自转参数(ERP),并与IERS C04(UTC 0时)的结果相比较,二者相差很小,均在IERS的ERP估计精度范围之内。基于即将建成的COMPASS全球连续监测与评估系统跟踪站,选择其网的8个IGS跟踪站的资料进行了解算并进行了分析和比对。 展开更多
关键词 全球连续监测与评估系统 地球自转参数 IERS
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大气对地球自转参数(ERP)的高频激发 被引量:7
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作者 谢伯全 郑大伟 《天文学报》 CSCD 北大核心 1996年第2期113-123,共11页
本文采用1983—1992年期间由空间大地测量技术观测和归算的地球自转参数(ERP)序列,以及由全球气象资料归算的大气角动量(AAM)序列,分析和研究了大气对地球自转参数的日长变化(LOD)和极移(x和y)在一个月时... 本文采用1983—1992年期间由空间大地测量技术观测和归算的地球自转参数(ERP)序列,以及由全球气象资料归算的大气角动量(AAM)序列,分析和研究了大气对地球自转参数的日长变化(LOD)和极移(x和y)在一个月时间尺度以内的高频激发作用,得到的主要结果如下:1大气对LOD分量高频潮汐的估计值存在着影响,但是,潮汐形变参数k/c随时间和频率的变化却是受非大气因素的扰动引起的.2.大气可以解释30天以下LOD非潮汐的大部分变化.3.极移分量30天以内的高频变化也主要由大气激发.x分量与大气的相关性要强于y分量,而且更为稳定,主要表现为平均时间尺度约为27天的波动,大气对这个波动的贡献可达70%. 展开更多
关键词 大气 地球自转参数 大气角动量 高频激发
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ERP预报误差对天文大地测量的影响分析
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作者 李崇辉 郑勇 +1 位作者 张超 马真 《大地测量与地球动力学》 CSCD 北大核心 2014年第2期132-136,共5页
分析ERP参数的30 d和365 d预报值的精度,以及预报误差对天文经纬度和天文方位角测量的影响。分析结果表明,在进行天文经纬度测量时,可采用365 d的极移预报值和30 d的日长预报值进行实时解算;在采用北极星时角法进行天文方位角测量时,可... 分析ERP参数的30 d和365 d预报值的精度,以及预报误差对天文经纬度和天文方位角测量的影响。分析结果表明,在进行天文经纬度测量时,可采用365 d的极移预报值和30 d的日长预报值进行实时解算;在采用北极星时角法进行天文方位角测量时,可采用365 d的极移和日长预报值进行实时解算。 展开更多
关键词 erp 极移 日长 天文经纬度 天文方位角
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基于VLBI与BDS联合解算ERP的算法研究 被引量:3
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作者 刘聪 孟鹏飞 刘鑫 《全球定位系统》 CSCD 2018年第3期26-31,38,共7页
利用PANDA软件解算2016年第61~91天的MGEX(Multi-GNSS Experiment)服务站的北斗数据,获得地球自转参数(ERP)。利用VieVS2.2软件处理了同时段的甚长基线干涉测量(VLBI)数据。采用基于IERS 08C04序列的定权方法对BDS和VLBI的解算结果进行... 利用PANDA软件解算2016年第61~91天的MGEX(Multi-GNSS Experiment)服务站的北斗数据,获得地球自转参数(ERP)。利用VieVS2.2软件处理了同时段的甚长基线干涉测量(VLBI)数据。采用基于IERS 08C04序列的定权方法对BDS和VLBI的解算结果进行加权平均,得到综合的ERP值。结果表明,与IERS比较,极移在X方向差值的RMS为0.249mas,Y方向差值的RMS为0.296mas,UT1-UTC差值的RMS为0.053ms.利用BDS与VLBI数据对ERP参数进行联合解算,弥补了BDS解算结果不稳定和VLBI观测不连续的缺陷,使解算结果的稳定性和可靠性均有所提高。 展开更多
关键词 地球自转参数 联合 VLBI BDS
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From the Beginning of the World to the Beginning of Life on Earth 被引量:3
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作者 Vladimir S. Netchitailo 《Journal of High Energy Physics, Gravitation and Cosmology》 2021年第4期1503-1523,共21页
Hypersphere World-Universe Model (WUM) is, in fact, a Paradigm Shift in Cosmology [1]. In this paper, we provide seven Pillars of WUM: Medium of the World;Inter-Connectivity of Primary Cosmological Parameters;Creation... Hypersphere World-Universe Model (WUM) is, in fact, a Paradigm Shift in Cosmology [1]. In this paper, we provide seven Pillars of WUM: Medium of the World;Inter-Connectivity of Primary Cosmological Parameters;Creation of Matter;Multicomponent Dark Matter;Macroobjects;Volcanic Rotational Fission;Dark Matter Reactors. We describe the evolution of the World from the Beginning up to the birth of the Solar System and discuss the condition of the Early Earth before the beginning of life on it. 展开更多
关键词 Hypersphere World-Universe Model Law of Conservation of Angular Momentum Dark Epoch Volcanic rotational Fission Luminous Epoch Dark Matter Particles Macroobject Shell Model Dark Matter Core Medium of the World Dark Matter Fermi Bubbles Galactic Wind Solar Wind Intergalactic Plasma Macroobjects Gravitomagnetic parameter Impedance Energy Density Gravitational parameter Hubble’s parameter Temperature of Microwave Background Radiation Inter-Connectivity of Primary Cosmological parameters Dark Matter Reactor Early earth Formation of earth Origin of Moon Continental Crust of earth earth’s Atmosphere and Oceans Origin of Life
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Effects of the Earth’s triaxiality on the polar motion excitations 被引量:2
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作者 Chen Wei Shen Wenbin 《Geodesy and Geodynamics》 2012年第2期1-7,共7页
This study aims to evaluate the significance of the Earth' s triaxiality to the polar motion theory. First of all, we compare the polar motion theories for both the triaxial and rotationally-symmetric Earth models, w... This study aims to evaluate the significance of the Earth' s triaxiality to the polar motion theory. First of all, we compare the polar motion theories for both the triaxial and rotationally-symmetric Earth models, which is established on the basis of the EGM2008 global gravity model and the MHB2000 Earth model. Then, we use the atmospheric and oceanic data (the NCEP/NCAR reanalyses and the ECCO assimulation products) to quantify the triaxiality effect on polar motion excitations. Numerical results imply that triaxiality only cause a small correction ( about 0. 1 - 0. 2 mas) to the geophysical excitations for the rotationally-symmetric case. The triaxiality correction is much smaller than the errors in the atmospheric and oceanic data, and thus can be neglected for recent studies on polar motion excitations. 展开更多
关键词 earth rotation theory dynamic figure parameter atmospheric-oceanic excitation
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基础时间序列长度对ERP短期预报精度影响的分析 被引量:1
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作者 郭忠臣 姚翔 《廊坊师范学院学报(自然科学版)》 2019年第1期26-30,共5页
高精度预报地球自转参数(Earth Rotation Parameters,ERP)对卫星导航等领域具有重要意义。不同时间长度的ERP序列作为基础序列对预报结果影响不同。分别对2~20年长度的以ERP序列作为基础时间序列的预报精度进行统计分析发现,当ERP基础... 高精度预报地球自转参数(Earth Rotation Parameters,ERP)对卫星导航等领域具有重要意义。不同时间长度的ERP序列作为基础序列对预报结果影响不同。分别对2~20年长度的以ERP序列作为基础时间序列的预报精度进行统计分析发现,当ERP基础时间序列为10年时,对3个参数的预报效果较优,但依据预报跨度的不同,也可适当调整基础时间序列长度。 展开更多
关键词 地球自转参数 时间序列 LS+AR 短期预报 平均绝对误差
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全球大地震对ERP的影响
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作者 顾震年 钱昌夏 《中国科学院上海天文台年刊》 1992年第13期26-32,共7页
本文探讨了1900-1986年间全球大地震和ERP之间的相关性。利用震中位置和震源参数,按Dahlen公式计算了由地震引起的地球惯性张量变化。结果表明单个地震对日长和极移变化的影响要比经典仪器测定的ERP水平小两个量级。空间技术能够获得高... 本文探讨了1900-1986年间全球大地震和ERP之间的相关性。利用震中位置和震源参数,按Dahlen公式计算了由地震引起的地球惯性张量变化。结果表明单个地震对日长和极移变化的影响要比经典仪器测定的ERP水平小两个量级。空间技术能够获得高精度的ERP,使得有可能用来进行ERP与地震关系的研究。 展开更多
关键词 天文地球动力学 地球自转参数 地震 地球惯性张量 日长变化 极移
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地球自转参数序列ERP(SHA)的谱结构
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作者 朱元兰 朱文耀 《中国科学院上海天文台年刊》 1993年第14期35-39,共5页
本文利用AR谱估计的Marple算法分析了ERP(SHA)序列中的谱结构,地球自转(日长变化和极移)的一些基本周期在谱结构中的存在表明,ERP(SHA)序列的可靠性以及它在天文和地球物理方面的可应用性。本文还给出了ERP(SHA)序列的高频变化结果。
关键词 地球自转参数 频谱分析 日长变化 极移 erp序列
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星基并置轨道配置对地球自转参数解算的影响
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作者 陈子超 李星星 +3 位作者 张柯柯 张伟 黄适 袁勇强 《导航定位学报》 CSCD 北大核心 2024年第2期13-22,共10页
为了进一步研究全球卫星导航系统(GNSS)和卫星激光测距(SLR)低轨卫星(LEO)星基并置对于地球自转参数(ERP)解算的贡献,综合评估星基并置轨道配置和空间连接误差对地球自转参数解算的影响:通过仿真实验,联合地面全球定位系统(GPS)、低轨... 为了进一步研究全球卫星导航系统(GNSS)和卫星激光测距(SLR)低轨卫星(LEO)星基并置对于地球自转参数(ERP)解算的贡献,综合评估星基并置轨道配置和空间连接误差对地球自转参数解算的影响:通过仿真实验,联合地面全球定位系统(GPS)、低轨卫星星载GPS,以及低轨卫星激光测距观测数据,分析低轨卫星轨道配置、空间连接误差对地球自转参数解算精度的影响。结果表明,ERP的估计精度受低轨星基并置站的轨道高度和倾角影响较为明显;相比于低轨道、低倾角卫星,高轨道、高倾角卫星对于极移参数的解算精度提升效果更为显著,这主要是得益于该轨道配置可提供更多的SLR观测数据;此外,空间连接误差分析结果表明,ERP对于低轨卫星SLR棱镜质心改正的误差更加敏感,特别是在Z向,2 cm的Z向SLR棱镜质心改正误差可使得极移X分量和Y分量的估计精度分别下降24%和14%。 展开更多
关键词 低轨卫星(LEO) 星基并置站 地球自转参数(erp) 轨道配置 空间连接误差
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A modified stochastic model for LS+AR hybrid method and its application in polar motion short-term prediction 被引量:1
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作者 Fei Ye Yunbin Yuan 《Geodesy and Geodynamics》 EI CSCD 2024年第1期100-105,共6页
Short-term(up to 30 days)predictions of Earth Rotation Parameters(ERPs)such as Polar Motion(PM:PMX and PMY)play an essential role in real-time applications related to high-precision reference frame conversion.Currentl... Short-term(up to 30 days)predictions of Earth Rotation Parameters(ERPs)such as Polar Motion(PM:PMX and PMY)play an essential role in real-time applications related to high-precision reference frame conversion.Currently,least squares(LS)+auto-regressive(AR)hybrid method is one of the main techniques of PM prediction.Besides,the weighted LS+AR hybrid method performs well for PM short-term prediction.However,the corresponding covariance information of LS fitting residuals deserves further exploration in the AR model.In this study,we have derived a modified stochastic model for the LS+AR hybrid method,namely the weighted LS+weighted AR hybrid method.By using the PM data products of IERS EOP 14 C04,the numerical results indicate that for PM short-term forecasting,the proposed weighted LS+weighted AR hybrid method shows an advantage over both the LS+AR hybrid method and the weighted LS+AR hybrid method.Compared to the mean absolute errors(MAEs)of PMX/PMY sho rt-term prediction of the LS+AR hybrid method and the weighted LS+AR hybrid method,the weighted LS+weighted AR hybrid method shows average improvements of 6.61%/12.08%and 0.24%/11.65%,respectively.Besides,for the slopes of the linear regression lines fitted to the errors of each method,the growth of the prediction error of the proposed method is slower than that of the other two methods. 展开更多
关键词 Stochastic model LS+AR Short-term prediction The earth rotation parameter(erp) Observation model
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基于国内VLBI站组网的EOP观测仿真研究
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作者 李镕希 吴元伟 +3 位作者 冯来平 姚当 杨旭海 张首刚 《时间频率学报》 CSCD 2024年第1期46-53,共8页
地球定向参数观测的仿真研究对于其实际测量具有指导意义,根据国内两套甚长基线干涉测量全球观测系统(中国科学院国家授时中心+中国科学院上海天文台)进行组网并对其EOP(Earth orientation parameters)测量能力进行了仿真分析。其中6站... 地球定向参数观测的仿真研究对于其实际测量具有指导意义,根据国内两套甚长基线干涉测量全球观测系统(中国科学院国家授时中心+中国科学院上海天文台)进行组网并对其EOP(Earth orientation parameters)测量能力进行了仿真分析。其中6站组网联测相比于3站组网,EOP总观测量时延数量提高约5倍,该网型测量UT1、PMX、PMY3个EOP分量的精度分别提高了2.3倍、3.0倍和2.6倍。不论是3站网型还是6站网型,EOP观测精度都会随着热噪声水平的升高而降低,但统计分析表明,热噪声水平在70 ps以下时,影响EOP测量精度的主导因素仍为网络的几何构型。对6种5台站组网情况下的EOP精度仿真,并与6台站仿真结果对比,表明当其中的喀什、哈尔滨、三亚3个外围观测站缺失时,会导致PMY测量精度的显著降低。 展开更多
关键词 甚长基线干涉测量 地球自转 地球定向参数 世界时 极移
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Determination of global geodetic parameters using satellite laser ranging to Galileo,GLONASS,and BeiDou satellites
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作者 Xingxing Li Jiaqing Lou +2 位作者 Yongqiang Yuan Jiaqi Wu Keke Zhang 《Satellite Navigation》 SCIE EI CSCD 2024年第1期240-257,共18页
The new Global Navigation Satellite System(GNSS)satellites,including GLONASS,Galileo,and BeiDou system,are equipped with Laser Retroreflector Arrays(LRA)to support Satellite Laser Ranging(SLR)tracking,which contribute... The new Global Navigation Satellite System(GNSS)satellites,including GLONASS,Galileo,and BeiDou system,are equipped with Laser Retroreflector Arrays(LRA)to support Satellite Laser Ranging(SLR)tracking,which contributes to the estimation of global geodetic parameters.In this study,we estimate the global geodetic parameters using the SLR observations to GNSS satellites and also investigate the effects of different data processing strategies on the estimated Earth Rotation Parameters(ERP),geocenter motion,and terrestrial scale.The results indicate that setting range bias parameters for each satellite-station pair can effectively account for the satellite-specific biases induced by LRAs,leading to smaller Root Mean Square Errors(RMSE)of the post-fit SLR residuals.Furthermore,estimating the range biases for each satellite-station pair improves the accuracy of the estimated station coordinates and ERP.We also examine the impact of different arc lengths on the estimates of ERP,geocenter motion,and terrestrial scale.The results show that extending arc length can significantly reduce the formal error of ERP.The 7-day strategy produces the smallest RMSEs of 473 microarcseconds and 495 microarcseconds for the estimated X-and Y-component of pole coordinates,and 52 microseconds for length-of-day,respectively.However,the estimated geocenter motion is less affected by the arc length,even the shortest 1-day arc strategy can capture the seasonal variations of geocenter motion in Z component.For scale estimation,extending the arc length notably improves the accuracy of the estimated station coordinates and scale,but this advantage becomes less noticeable in longer arcs.The 7-day solution also obtains the closet scale results compared to ITRF2014,with the RMSE of 2.10×10^(–9). 展开更多
关键词 Satellite laser ranging GNSS Geodetic parameters earth rotation parameters Geocenter motion Terrestrial scale
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