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吴洪涛  赵修斌  庞春雷  张良  冯波 《航空学报》2018,39(6):321850-321850
多天线增强了全球卫星导航系统(GNSS)单频单历元姿态测量解算模型的强度,但随着天线数量增加,模糊度维数成倍增加,从模糊度域确定搜索空间的计算量将显著增长。基于此,提出了基于值域的多约束多天线GNSS单频单历元姿态测量新算法:该算法将姿态约束融入值域搜索模型,利用姿态约束条件推导搜索步长,通过姿态域三维搜索确定模糊度搜索空间,以基于最优条件姿态解非迭代近似估计的方法固定模糊度。实验结果表明,新算法中模糊度搜索效率较原方法提高约65.8%,固定模糊度效率较标准迭代算法提高约95.3%,且与标准迭代算法性能相当;所提算法能够实现GNSS单频单历元的模糊度固定和载体全姿态测量,具有较高的正确率。  相似文献   
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With the Global Navigation Satellite System (GNSS) developing, the single-frequency single-epoch multiple GNSSs (multi-GNSS) relative positioning has become feasible. Since a larger number of the observed satellites make the instantaneous (single-epoch) positioning time-consuming, a proper satellite selection is necessary. Among the present methods, the satellite selection with a fixed high cut-off elevation angle (CEA) is least time-consuming. However, there is no criterion how large a fixed high CEA should be to achieve a high success rate and less time consumption. Besides, a fixed high CEA makes the number of visible satellites largely variable, which affects the success rate. Hence, a satellite selection strategy based on ambiguity dilution of precision (ADOP) is proposed. Firstly, the theoretical proof that the ADOP increases the least when removing satellites are all low-elevation-angle satellites is given, which is important to achieve the fast positioning with a high success rate. Then, the threshold β is calculated for a different number of satellites and a given ADOP. The satellites are selected based on their elevation angles from high to low until β of the selected satellites becomes smaller than the corresponding threshold; this method is called the extended floating CEA multi-GNSS (EF-multi-GNSS). The comparison of the single-frequency single-epoch positioning performance of the EF-multi-GNSS with the satellite selections based on a fixed low CEA (L-multi-GNSS) and a fixed high CEA (H-multi-GNSS) via the relative positioning experiments shows that: (1) the EF-multi-GNSS with a minimal number of satellites can achieve the fast positioning and a high success rate close to 100%. It can greatly reduce the time consumption of the L-multi-GNSS, by about 64.0%, by selecting 12.6 satellites of 23.4 satellites; (2) the floating CEA of EF-multi-GNSS eliminates the consideration how large a fixed high CEA should be, and a CEA larger than the fixed high CEA of the H-multi-GNSS makes it more suitable for different conditions.  相似文献   
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