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乌克兰获准参与“伽利略”导航卫星计划
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《世界航空航天博览(B版)》 2005年第7期76-76,共1页
乌克兰参与“伽利略”导航卫星计划最终获得批准。欧盟负责能源与交通事务的总干事与乌克兰代理外交部长在基辅宣布此协议于6月3日生效。与乌克兰达成的“伽利略”协议提供了在卫星导航各领域,特别是在科学与技术、工业制造、服务、市... 乌克兰参与“伽利略”导航卫星计划最终获得批准。欧盟负责能源与交通事务的总干事与乌克兰代理外交部长在基辅宣布此协议于6月3日生效。与乌克兰达成的“伽利略”协议提供了在卫星导航各领域,特别是在科学与技术、工业制造、服务、市场开发、以及标准化、频率和认证等领域开展的合作活动。它还表明这是欧洲同步卫星导航覆盖服务扩大到乌克兰的第一步,乌克兰是通过入股方式参加“伽利略”联合执行体的。 展开更多
关键词 卫星计划 乌克兰 伽利略 同步卫星导航 工业制造 市场开发 标准化 协议 服务
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欧洲卫星导航系统开始服务航空领域
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作者 章禾 《中国测绘》 2011年第2期85-85,共1页
欧洲航天局近日宣布.欧洲同步卫星导航覆盖服务(EGNOS)正式“进军”航空领域.为执行紧急任务的飞机提供着陆安全保障。
关键词 欧洲航天局 航空领域 卫星导航系统 服务 同步卫星导航 安全保障 着陆 飞机
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欧洲卫星导航系统EGNOS开始服务航空
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《卫星与网络》 2011年第3期78-78,共1页
3月2日,欧洲航天局在巴黎宣布,欧洲同步卫星导航覆盖服务(EGN0S)从即日起正式“进军”航空领域,为执行紧急任务的飞机提供着陆安全保障。
关键词 欧洲航天局 航空领域 卫星导航系统 EGNOS 服务 同步卫星导航 安全保障
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双星定位/SINS组合导航系统研究 被引量:19
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作者 林雪原 刘建业 汪叔华 《中国空间科学技术》 EI CSCD 北大核心 2003年第2期34-38,共5页
双星定位系统是一种区域性定位系统。介绍了双星定位系统的定位原理 ,说明了其存在的定位实时性较差的不足。对此提出了利用惯导经卡尔曼滤波器校正后的输出速度信息来修正双星定位系统的输出水平位置信息 ,然后与惯导进行组合 ,建立了... 双星定位系统是一种区域性定位系统。介绍了双星定位系统的定位原理 ,说明了其存在的定位实时性较差的不足。对此提出了利用惯导经卡尔曼滤波器校正后的输出速度信息来修正双星定位系统的输出水平位置信息 ,然后与惯导进行组合 ,建立了其状态方程与观测方程。仿真结果证明该方案切实可行 。 展开更多
关键词 双星定位系统 同步卫星导航 捷联式惯性导航 位置误差 卡尔曼滤波 组合导航系统
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三星定位/SINS伪距组合导航系统的研究 被引量:9
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作者 林雪原 刘建业 范胜林 《中国空间科学技术》 EI CSCD 北大核心 2002年第6期6-12,共7页
双星定位系统是中国建立起来的一种区域性全球定位系统(RDSS)。文章分析了双星定位系统存在的不足,提出了在双星定位系统上基于三颗地球同步卫星的三星定位导航系统,接收机可以根据测得的三个伪距以及高度表信息解算用户位置。进一步研... 双星定位系统是中国建立起来的一种区域性全球定位系统(RDSS)。文章分析了双星定位系统存在的不足,提出了在双星定位系统上基于三颗地球同步卫星的三星定位导航系统,接收机可以根据测得的三个伪距以及高度表信息解算用户位置。进一步研究了三星定位系统与SINS进行伪距方式组合的导航系统,仿真结果表明了该组合导航系统可有效地提高定位精度,是一种非常适合于中国国情的惯性/卫星组合导航系统。 展开更多
关键词 三星定位 SINS 同步卫星导航 组合式导航 高度表 距离误差
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无线GPS接收机
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《全球定位系统》 2003年第6期44-44,共1页
关键词 无线GPS接收机 欧洲地球同步卫星导航系统 自主模态 误差
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Research on the Bit Synchronization Algorithm and Multiplexing Technology in GNSS Receiver 被引量:3
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作者 QI Jianzhong SONG Peng 《China Communications》 SCIE CSCD 2014年第A02期30-36,共7页
In this paper, the bit synchronization algorithms in GNSS receiver are introduced, including the traditional histogram method, K-P algorithm and Viterbi algorithm. The FPGA implementation is also included. A novel tim... In this paper, the bit synchronization algorithms in GNSS receiver are introduced, including the traditional histogram method, K-P algorithm and Viterbi algorithm. The FPGA implementation is also included. A novel time division multiplexing technology (TDM) based on multi-channel shared synchronizer is proposed in this paper to solve the constrained hardware resource problem of multi-system satellite navigation receiver. Through the using of control state machine and data register structure, we realize the multiplexing of bit synchronizer of navigation receiver, which saves the hardware resource. After the experiment, it can be verified that the receiver based on the bit synchronization and multiplexing technology can correctly restore the navigation information. 展开更多
关键词 bit synchronization carrier-to-noiseratio MULTIPLEXING GNSS
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Satellite-station time synchronization information based real-time orbit error monitoring and correction of navigation satellite in Beidou System 被引量:4
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作者 HE Feng ZHOU ShanShi +5 位作者 HU XiaoGong ZHOU JianHua LIU Li GUO Rui LI XiaoJie WU Shan 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS 2014年第7期1395-1403,共9页
Satellite-station two-way time comparison is a typical design in Beidou System(BDS)which is significantly different from other satellite navigation systems.As a type of two-way time comparison method,BDS time synchron... Satellite-station two-way time comparison is a typical design in Beidou System(BDS)which is significantly different from other satellite navigation systems.As a type of two-way time comparison method,BDS time synchronization is hardly influenced by satellite orbit error,atmosphere delay,tracking station coordinate error and measurement model error.Meanwhile,single-way time comparison can be realized through the method of Multi-satellite Precision Orbit Determination(MPOD)with pseudo-range and carrier phase of monitor receiver.It is proved in the constellation of 3GEO/2IGSO that the radial orbit error can be reflected in the difference between two-way time comparison and single-way time comparison,and that may lead to a substitute for orbit evaluation by SLR.In this article,the relation between orbit error and difference of two-way and single-way time comparison is illustrated based on the whole constellation of BDS.Considering the all-weather and real-time operation mode of two-way time comparison,the orbit error could be quantifiably monitored in a real-time mode through comparing two-way and single-way time synchronization.In addition,the orbit error can be predicted and corrected in a short time based on its periodic characteristic.It is described in the experiments of GEO and IGSO that the prediction accuracy of space signal can be obviously improved when the prediction orbit error is sent to the users through navigation message,and then the UERE including terminal error can be reduced from 0.1 m to 0.4 m while the average accuracy can be improved more than 27%.Though it is still hard to make accuracy improvement for Precision Orbit Determination(POD)and orbit prediction because of the confined tracking net and the difficulties in dynamic model optimization,in this paper,a practical method for orbit accuracy improvement is proposed based on two-way time comparison which can result in the reflection of orbit error. 展开更多
关键词 satellite navigation orbital mechanics time synchronization ephemeris fitting
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COMPASS time synchronization and dissemination—Toward centimetre positioning accuracy 被引量:9
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作者 WANG ZhengBo ZHAO Lu +3 位作者 WANG ShiGuang ZHANG JianWei WANG Bo WANG LiJun 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS 2014年第9期1788-1804,共17页
In this paper we investigate methods to achieve highly accurate time synchronization among the satellites of the COMPASS global navigation satellite system(GNSS).Owing to the special design of COMPASS which implements... In this paper we investigate methods to achieve highly accurate time synchronization among the satellites of the COMPASS global navigation satellite system(GNSS).Owing to the special design of COMPASS which implements several geo-stationary satellites(GEO),time synchronization can be highly accurate via microwave links between ground stations to the GEO satellites.Serving as space-borne relay stations,the GEO satellites can further disseminate time and frequency signals to other satellites such as the inclined geo-synchronous(IGSO)and mid-earth orbit(MEO)satellites within the system.It is shown that,because of the accuracy in clock synchronization,the theoretical accuracy of COMPASS positioning and navigation will surpass that of the GPS.In addition,the COMPASS system can function with its entire positioning,navigation,and time-dissemination services even without the ground link,thus making it much more robust and secure.We further show that time dissemination using the COMPASS-GEO satellites to earth-fixed stations can achieve very high accuracy,to reach 100 ps in time dissemination and 3 cm in positioning accuracy,respectively.In this paper,we also analyze two feasible synchronization plans.All special and general relativistic effects related to COMPASS clocks frequency and time shifts are given.We conclude that COMPASS can reach centimeter-level positioning accuracy and discuss potential applications. 展开更多
关键词 GNSS time and frequency Global Navigation Satellite System GNSS time synchronization time dissemination atomic clock phase locked loop RELATIVITY Geo-stationary satellites reference system
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