期刊文献+
共找到3篇文章
< 1 >
每页显示 20 50 100
解决某自行体跟踪座轴系异常的措施探讨
1
作者 原星武 《火控雷达技术》 2007年第4期41-43,72,共4页
针对某自行跟踪座轴系中红外及电视轴与基准望远镜偏离9密位之异常现象,提出以整体模压缓冲器替代原弹簧缓冲器的解决措施,并从理论上对该措施的有效性进行分析,由现场安装测试及相关几套产品靶场实际使用,证明该措施可行、简单、经济... 针对某自行跟踪座轴系中红外及电视轴与基准望远镜偏离9密位之异常现象,提出以整体模压缓冲器替代原弹簧缓冲器的解决措施,并从理论上对该措施的有效性进行分析,由现场安装测试及相关几套产品靶场实际使用,证明该措施可行、简单、经济、有效,同时完全符合力学原理。 展开更多
关键词 跟踪座 轴系 缓冲器 转动惯量 冲击
下载PDF
卫星跟踪天线座装配中关键参数的验证
2
作者 李成 《一重技术》 2001年第4期68-70,共3页
论述卫星跟踪天线座装配中方位转台水平度、俯仰轴对方位轴垂直度、方位转台传动精度等几个 最重要的参数的测量方法。
关键词 方位转台 俯仰轴 方位轴 传动精度 误差分析 卫星跟踪天线 装配
下载PDF
Orbit determination and time synchronization for a GEO/IGSO satellite navigation constellation with regional tracking network 被引量:47
3
作者 ZHOU ShanShi HU XiaoGong +9 位作者 WU Bin LIU Li QU WeiJing GUO Rui HE Feng CAO YueLing Wu XiaoLi ZHU LingFeng SHI Xin TAN HongLi 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS 2011年第6期1089-1097,共9页
Aiming at regional services,the space segment of COMPASS (Phase I) satellite navigation system is a constellation of Geostationary Earth Orbit (GEO),Inclined Geostationary Earth Orbit (IGSO) and Medium Earth Orbit (ME... Aiming at regional services,the space segment of COMPASS (Phase I) satellite navigation system is a constellation of Geostationary Earth Orbit (GEO),Inclined Geostationary Earth Orbit (IGSO) and Medium Earth Orbit (MEO) satellites.Precise orbit determination (POD) for the satellites is limited by the geographic distribution of regional tracking stations.Independent time synchronization (TS) system is developed to supplement the regional tracking network,and satellite clock errors and orbit data may be obtained by simultaneously processing both tracking data and TS data.Consequently,inconsistency between tracking system and TS system caused by remaining instrumental errors not calibrated may decrease navigation accuracy.On the other hand,POD for the mixed constellation of GEO/IGSO/MEO with the regional tracking network leads to parameter estimations that are highly correlated.Notorious example of correlation is found between GEO's orbital elements and its clock errors.We estimate orbital elements and clock errors for a 3GEO+2IGSO constellation in this study using a multi-satellite precise orbit determination (MPOD) strategy,with which clock error elimination algorithm is applied to separate orbital and clock estimates to improve numerical efficiency.Satellite Laser Ranging (SLR) data are used to evaluate User Ranging Error (URE),which is the orbital error projected on a receiver's line-of-sight direction.Two-way radio-wave time transfer measurements are used to evaluate clock errors.Experimenting with data from the regional tracking network,we conclude that the fitting of code data is better than 1 m in terms of Root-Mean-Square (RMS),and fitting of carrier phase is better than 1 cm.For orbital evaluation,difference between computed receiver-satellite ranging based on estimated orbits and SLR measurements is better than 1 m (RMS).For clock estimates evaluation,2-hour linear-fitting shows that the satellite clock rates are about 1.E-10 s/s,while receiver clock rates are about 1×10 13-1×10 12 s/s.For the 72-hour POD experiment,the average differences between POD satellite clock rates estimates and clock measurements based on TS system are about 1×10 13 s/s,and for receiver clock rates,the differences are about 1×10 15 s/s. 展开更多
关键词 POD time synchronization clock errors elimination SLR evaluation
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部