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提出了一种北斗卫星定位系统和惯性导航系统的组合导航无源定位算法。以伪距率为观测量,基于高稳定度用户时钟,结合北斗系统的热备份星,在三星共视下用两级卡尔曼滤波器对惯导进行闭环校正。给出了组合导航系统的构成,以及第一、二级滤波的数学模型。该法能根据收星情况在闭环与开环方式间稳定转换。仿真结果表明,此算法可提高丢星时组合导航系统的滤波定位精度,有效校正惯导的姿态误差角,并以较高的精度估计用户的三维速度。 相似文献
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对采用时分多址轮询建链体制的导航星座星间链路网络,为了指导星间链路网络地面前向数据接入的应用,分析了不同地面前向数据接入方式的星-星-地联合数据交互机制及其对网络通信性能的影响,并结合应用代价给出了综合评价和使用建议.以前向数据最快路径接入方式和固定节点接入方式为代表,分析了星间链路网络与地面间星-星-地联合数据交互机... 相似文献
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Angles-only relative orbit determination in low earth orbit 总被引:1,自引:0,他引:1
Jean-Sébastien Ardaens Gabriella Gaias 《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2018,61(11):2740-2760
The paper provides an overview of the angles-only relative orbit determination activities conducted to support the Autonomous Vision Approach Navigation and Target Identification (AVANTI) experiment. This in-orbit endeavor was carried out by the German Space Operations Center (DLR/GSOC) in autumn 2016 to demonstrate the capability to perform spaceborne autonomous close-proximity operations using solely line-of-sight measurements. The images collected onboard have been reprocessed by an independent on-ground facility for precise relative orbit determination, which served as ultimate instance to monitor the formation safety and to characterize the onboard navigation and control performances. During two months, several rendezvous have been executed, generating a valuable collection of images taken at distances ranging from 50?km to only 50?m. Despite challenging experimental conditions characterized by a poor visibility and strong orbit perturbations, angles-only relative positioning products could be continuously derived throughout the whole experiment timeline, promising accuracy at the meter level during the close approaches. The results presented in the paper are complemented with former angles-only experience gained with the PRISMA satellites to better highlight the specificities induced by different orbits and satellite designs. 相似文献
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Chi-Ming Lee Chung-Yen Kuo Jian Sun Tzu-Pang Tseng Kwo-Hwa Chen Wen-Hau Lan C.K. Shum Tarig Ali Kuo-En Ching Philip Chu Yuanyuan Jia 《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2019,63(3):1280-1288
Global sea level rise due to an increasingly warmer climate has begun to induce hazards, adversely affecting the lives and properties of people residing in low-lying coastal regions and islands. Therefore, it is important to monitor and understand variations in coastal sea level covering offshore regions. Signal-to-noise ratio (SNR) data of Global Navigation Satellite System (GNSS) have been successfully used to robustly derive sea level heights (SLHs). In Taiwan, there are a number of continuously operating GNSS stations, not originally installed for sea level monitoring. They were established in harbors or near coastal regions for monitoring land motion. This study utilizes existing SNR data from three GNSS stations (Kaohsiung, Suao, and TaiCOAST) in Taiwan to compute SLHs with two methods, namely, Lomb–Scargle Periodogram (LSP)-only, and LSP aided with tidal harmonic analysis developed in this study. The results of both methods are compared with co-located or nearby tide gauge records. Due to the poor quality of SNR data, the worst accuracy of SLHs derived from traditional LSP-only method exceeds 1?m at the TaiCOAST station. With our procedure, the standard deviations (STDs) of difference between GNSS-derived SLHs and tide gauge records in Kaohsiung and Suao stations decreased to 10?cm and the results show excellent agreement with tide gauge derived relative sea level records, with STD of differences of 7?cm and correlation coefficient of 0.96. In addition, the absolute GNSS-R sea level trend in Kaohsiung during 2006–2011 agrees well with that derived from satellite altimetry. We conclude that the coastal GNSS stations in Taiwan have the potential of monitoring absolute coastal sea level change accurately when our proposed methodology is used. 相似文献
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