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231.
文章分析了GSM公共控制信道的帧结构以及FCCH和SCH脉冲结构,介绍了一种捕获FCCH信道并进行频偏估计的算法。根据FCCH调制信号在相位上的特点,使用文章介绍的算法可以检测到FCCH的起始位置,而且能够根据该算法得到信号的频率偏移值,消去频偏对需要解调的SCH脉冲的影响。 相似文献
232.
Space debris is is referred to as the human made pollution in the space environment.Ever since the first launch of man made satellite in 1957, millions of kilograms of objects have been sent into the space. Large space objects that are traceable and cataloged by ground base telescope and radar reach around 9 000, becoming grave threat to the social development of human beings as well as astronautics. 相似文献
233.
研讨了辐射温度计的标定方法,提出了1种新的标定法-分度函数法;并以Ge光电池为例,导出其分度函数的具体形式,同时估算了分度误差。 相似文献
235.
A novel predictive algorithm for double difference observations of obstructed BeiDou geostationary earth orbit (GEO) satellites 总被引:1,自引:0,他引:1
Yuan Du Guanwen Huang Qin Zhang Rui Tu Junqiang Han Xingyuan Yan Xiaolei Wang 《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2019,63(5):1554-1565
Transmission link disturbances and device failure cause global navigation satellite system (GNSS) receivers to miss observations, leading to poor accuracy in real-time kinematic (RTK) positioning. Previously described solutions for this problem are influenced by the length of the prediction period, or are unable to account for changes in receiver state because they use information from previous epochs to make predictions. We propose an algorithm for predicting double difference (DD) observations of obstructed BeiDou navigation system (BDS) GEO satellites. Our approach adopts the first-degree polynomial function for predicting missing observations. We introduce a Douglas-Peucker algorithm to judge the state of the rover receiver to reduce the impact of predictive biases. Static and kinematic experiments were carried out on BDS observations to evaluate the proposed algorithm. The results of our navigation experiment demonstrate that RTK positioning accuracy is improved from meter to decimeter level with fixed ambiguity (horizontal?<?2?cm, vertical?<?18?cm). Horizontal accuracy is improved by over 50%, and the vertical accuracies of the results of the static and kinematic experiments are increased by 47% and 27% respectively, compared with the results produced by the classical approach. Though as the baseline becomes longer, the accuracy is weakened, our predictive algorithm is an improvement over existing approaches to overcome the issue of missing data. 相似文献
237.
Peiyuan Zhou Lan Du Xiaojie Li Yang Gao 《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2019,63(5):1781-1791
The Geostationary Earth Orbit (GEO) satellite is a crucial part of the BeiDou Navigation Satellite System (BDS) constellation. However, due to various perturbation forces acting on the GEO satellite, it drifts gradually over time. Thus, frequent orbit maneuvers are required to maintain the satellite at its designed position. During the orbit maneuver and recovery periods, the orbit quality of the maneuvered satellite computed with broadcast navigation ephemeris will be significantly degraded. Furthermore, the conventional dynamic Precise Orbit Determination (POD) approach may not work well, because of a lack of publicly available satellite information for modeling the thrust forces. In this paper, a near real-time approach free of thrust forces modeling is proposed for BDS GEO satellite orbit determination and maneuver analysis based on the Reversed Point Positioning (RPP). First, the station coordinates and receiver clock offsets are estimated by GPS/BDS combined Single Point Positioning (SPP) with single-frequency phase-smoothed pseudorange observations. Then, with the fixed station coordinates and receiver clock offsets, the RPP method can be conducted to determine the GEO satellite orbits. When no orbit maneuvers occur, the proposed method can obtain orbit accuracies of 0.92, 2.74, and 8.30?m in the radial, along-track, and cross-track directions, respectively. The average orbit-only Signal-In-Space Range Error (SISRE) is 1.23?m, which is slightly poorer than that of the broadcast navigation ephemeris. Using four days of GEO maneuvered datasets, it is further demonstrated that the derived orbits can be employed to characterize the behaviors of GEO satellite maneuvers, such as the time span of the maneuver as well as the satellite thrusting accelerations. These results prove the efficiency of the proposed method for near real-time GEO satellite orbit determination during maneuvers. 相似文献
238.
Xuemin Zhang Huaran Chen Jing Liu Xuhui Shen Yuanqing Miao Xuebin Du Jiadong Qian 《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2012
The ground-based and satellite DC-ULF electric field data were analyzed around Wenchuan M8.0 earthquake on May 12, 2008 in China. The results show that ground electric field anomalies occurred at 3 stations located to the north and south of the epicenter with the amplitude of 3–100 mV/km. The change shapes and their amplitude of ground electric field anomalies are different largely due to their individual underground layer conductivity, water level and so on. The analysis of long time series illustrates that the abnormal geoelectric field started since March 2008. Onboard the DEMETER satellite, the ULF waveforms of electric field were collected and processed by wavelet transform method. The disturbances in the ionosphere were about 3–5 mV/m at a frequency band lower than 0.5 Hz. When the ground and space electric field anomalies were compared, their occurrence time and spatial distribution points are consistent with each other, including the long time anomalies from March 2008 and the short term ones 1–2 days before the Wenchuan earthquake. Finally, the coupling mechanism was discussed. 相似文献
239.
提出了一种针对展成法加工的弧齿锥齿轮几何建模方法.该方法有两个步骤:(1)通过模仿弧齿锥齿轮加工中的切齿建立参考模型;(2)从参考模型上选择数据点,将这些数据点拟合为NURBS曲面,从而建立最终的实体模型.该方法中,通过模仿切削可以避免深奥的数学理论和复杂的方法,方便地在齿轮制造出来之前(设计阶段)得到复杂齿面上的数据点,并有效提高实体模型的精度.另外,最终得到的模型齿面统一由NURBS曲面函数表示,NURBS曲面连续和光滑,可为CAD/CAE广泛使用.实验表明,通过该方法能够精确建立一对弧齿锥齿轮模型,为CAD/CAE建模提供了一种可行有效的思路. 相似文献
240.