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1.
Wenwu Ding Bingfeng Tan Yongchang Chen Felix Norman Teferle Yunbin Yuan 《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2018,61(3):951-961
The performance of real-time (RT) precise positioning can be improved by utilizing observations from multiple Global Navigation Satellite Systems (GNSS) instead of one particular system. Since the end of 2012, BeiDou, independently established by China, began to provide operational services for users in the Asia-Pacific regions. In this study, a regional RT precise positioning system is developed to evaluate the performance of GPS/BeiDou observations in Australia in providing high precision positioning services for users. Fixing three hourly updated satellite orbits, RT correction messages are generated and broadcasted by processing RT observation/navigation data streams from the national network of GNSS Continuously Operating Reference Stations in Australia (AUSCORS) at the server side. At the user side, RT PPP is realized by processing RT data streams and the RT correction messages received. RT clock offsets, for which the accuracy reached 0.07 and 0.28?ns for GPS and BeiDou, respectively, can be determined. Based on these corrections, an accuracy of 12.2, 30.0 and 45.6?cm in the North, East and Up directions was achieved for the BeiDou-only solution after 30 min while the GPS-only solution reached 5.1, 15.3 and 15.5?cm for the same components at the same time. A further improvement of 43.7, 36.9 and 45.0 percent in the three directions, respectively, was achieved for the combined GPS/BeiDou solution. After the initialization process, the North, East and Up positioning accuracies were 5.2, 8.1 and 17.8?cm, respectively, for the BeiDou-only solution, while 1.5, 3.0, and 4.7?cm for the GPS-only solution. However, we only noticed a 20.9% improvement in the East direction was obtained for the GPS/BeiDou solution, while no improvements in the other directions were detected. It is expected that such improvements may become bigger with the increasing accuracy of the BeiDou-only solution. 相似文献
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实时精确定轨的自校准方法 总被引:1,自引:4,他引:1
实时精确定轨的迫切性越来越成为航天技术任务发展所关注的问题。本文将轨道约束“EMBET”自校准技术^[1,2]推广到实时轨道确定处理;在不断地获取对航天器轨道测量数据的过程中,递推地估算和修正观测数据的系统误差,又实时地为用户提供精确的轨道状态参数或轨道根数。 相似文献
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以大型客机为例,对飞机穿越微下击暴流的起飞飞行特性进行了实时数字,实时混合仿真及人机半物仿真研究,分析不同风场和不同进风高度对有,无人操纵飞行的航迹特性及相应状态变量响应特性的影响,探讨了飞机起飞飞行的安全性及正确操纵策略,最后给出了一些结论。 相似文献
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介绍了稳定裕度试飞流程和稳定裕度实时数据处理软件的设计思路,讨论了稳定裕度实时数据处理系统的数据流程和如何建立飞行试验数据库,最后给出了系统经过试飞验证后的几点结论。 相似文献
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制造系统里所用的微处理器中,单片机只能做逻辑处理和简单数学计算,而数字信号处理器(DSP)可进行相当复杂的数学处理。本文概述DSP的数学原理及其技术特点,介绍了基于DSP智能控制器在制造业中实时测控系统的应用实例。 相似文献
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Gas Turbine Engines (GTEs) are vastly used for generation of mechanical power in a wide range of applications from airplane propulsion systems to stationary power plants. The gas-path components of a GTE are exposed to harsh operating and ambient conditions, leading to several degradation mechanisms. Because GTE components are mostly inaccessible for direct measurements and their degradation levels must be inferred from the measurements of accessible parameters, it is a challenge to acquire reliable information on the degradation conditions of the parts in different fault modes. In this work, a data-driven fault detection and degradation estimation scheme is developed for GTE diagnostics based on an Adaptive Neuro-Fuzzy Inference System (ANFIS). To verify the performance and accuracy of the developed diagnostic framework on GTE data, an ensemble of measurable gas path parameters has been generated by a high-fidelity GTE model under (a) diverse ambient conditions and control settings, (b) every possible combination of degradation symptoms, and (c) a broad range of signal to noise ratios. The results prove the competency of the developed framework in fault diagnostics and reveal the sensitivity of diagnostic results to measurement noise for different degradation symptoms. 相似文献
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Rui Tu Jinhai Liu Rui Zhang Pengfei Zhang Xiaodong Huang Xiaochun Lu 《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2019,63(2):913-926
This paper proposes a real-time kinematic (RTK) model that uses one common reference satellite for the Galileo system with four frequency observations. In the proposed model, the double-differenced (DD) pseudorange and carrier phase biases among the different frequencies are estimated as unknown parameters to recover the integer features of the DD ambiguities among the different frequencies for ambiguity resolution and precise positioning. Analysis results show that the E5a, E5b, and E5 frequencies have virtually the same performance in terms of the positioning accuracy, observation residuals, and ratio values of ambiguity resolution. However, the E1 frequency performs worse than the E5a, E5b, and E5 frequencies. The RTK results for the combination of multiple frequencies are much better than those for a single-frequency observation, the coordinates’ standard deviation is improved about 20–30%, and the ambiguity fix time is improved about 10%. 相似文献