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排序方式: 共有214条查询结果,搜索用时 218 毫秒
101.
102.
整周模糊度动态快速求解 总被引:6,自引:0,他引:6
初始整周模糊度的求解是利用GPS载波相位进行测量时的关键问题,本文提出了一种初始整周模糊度在航快速解算方法,该方法由低阶Kalman滤波器和基线约束条件来实现,利用Kalman滤波器动态递推的特性可以实现模糊度的动态解算,由基线约束条件可以有效地剔除不合理模糊度组合,文中对所提出的算法进行了理论推导,并进行了计算机仿真和实测数据分析,仿真和实验结果表明,该算法计算量小,快速准确,适合整周模糊度的快速动态求解。 相似文献
103.
研究了分数阶模糊函数的时移特性,根据此特性提出了基于分数阶模糊函数延时对消的海面运动弱目标检测方法.通过对IPIX实测数据验证表明,该方法在增加目标与杂波FRFT峰值差、提高信杂比以及检测概率等方面都明显优于仅对回波作分数阶模糊函数.设置适当的恒虚警检测门限,该检测方法能够达到更好的检测效果. 相似文献
104.
T. Hobiger M. SekidoY. Koyama T. Kondo 《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2009
Next-generation Very Long Baseline Interferometry (VLBI) system designs are aiming at 1 mm global position accuracy. In order to achieve this, it is not only necessary to deploy improved VLBI systems, but also to develop analysis strategies that take full advantage of the observations taken. Since the new systems are expected to incorporate four independent radio frequency bands, it should be feasible to resolve phase ambiguities directly from post-correlation data, providing roughly an order of magnitude improvement in precision of the delay observable. As the unknown ambiguities are of integer nature, it is discussed here how they the can be resolved analytically using algorithms which have been developed for Global Navigation Satellite System (GNSS) applications. Furthermore, it will be shown that ionosphere contribution and source structure effects, so-called core-shifts, can be solved simultaneously with the delay, which is the main geodetic observable for follow-on analysis. In order to verify the proposed algorithm, simulated observations were created using parameters from actual design studies. It is shown that, even in the case of low signal-to-noise ratio observations, reliable phase ambiguity resolution can be achieved and it is discussed how the integer ambiguity recovery depends on the number of observations and signal-to-noise ratio. 相似文献
105.
Kai Xiao Fuping Sun Maihang He Lundong Zhang Xinhui Zhu 《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2021,67(5):1638-1655
The integer ambiguity resolution (AR) of carrier phase is significant for Global Navigation Satellite System (GNSS) precise positioning. However, in kinematic case, single-epoch AR methods based on alone GNSS are usually not reliable due to the instable pseudorange accuracy. Moreover, the computation of classical AR method Least Squares Ambiguity Decorrelation Adjustment (LAMBDA) is large. Thus, the inertial measurement unit (IMU) is introduced, a new inertial-aided AR method that directly rounds the float ambiguity of BeiDou triple-frequency combined observations, which is characterized by long wavelength, low carrier-phase noise and ionospheric delay, is proposed. The mathematical model of the new method is derived first. Then the impacts of the carrier-phase noise, ionospheric delay and inertial navigation system (INS) position error on the AR success ratio of combined observation are analyzed through probabilistic approach. Based on above investigation, the combinations (0, ?1, 1), (1, 4, ?5) and (4, ?2, ?3) are selected to resolve the original ambiguity. A vehicular integrated navigation test is performed to demonstrate the proposed method. The results show that the average AR success ratios of the three selected combinations, whose float ambiguity errors are 0.041, 0.146, 0.279 cycle respectively, are above 97.25% without regard to low-elevation C05. With respect to positioning accuracy based on our AR method when compared with IE software, the east, north, up error RMS of position are 0.042, 0.024, 0.069 m, respectively. In terms of the AR recover after the BeiDou signals outage, as long as 62 s BeiDou signal complete outage, all the ambiguities of all satellites could be re-fixed immediately. Besides, during the 90 s signals partial outage, the AR is not influenced by the position error, since the float ambiguity errors are all below half-cycle. The research of this contribution demonstrates the effectiveness of the proposed new method, which indicates it is applicable to kinematic positioning, even in BDS degraded and denied environments. 相似文献
106.
受宽带噪声激励的二元机翼随机振动系统的矩Lyapunov指数 总被引:1,自引:0,他引:1
通过计算受宽带噪声参激的二元机翼随机振动系统的矩Lyapunov指数,研究了系统的矩稳定和概率1稳定。首先在经典二元机翼颤振方程中加入随机激励,通过随机平均法、Girsanov定理和Feynmann-Kac公式得到关于矩Lyapunov指数的特征值问题。其次采用Fourier余弦级数对特征函数进行正交展开,得到系统矩Lyapunov指数的近似解析式。最后,通过Monte Carlo仿真验证了矩Lyapunov指数近似解析式的可信性,并讨论了系统参数、来流平均速度以及随机噪声谱密度对机翼稳定性的影响。 相似文献
107.
108.
GNSS整周模糊度解相关算法的性能直接影响到整周模糊度的搜索速度和解算成功率。为了在不降低GNSS整周模糊度解相关算法解相关程度的前提下,提高解相关算法的计算效率,在深入分析典型解相关方法优缺点的基础上,提出基于对角线预排算的解相关算法。该方法源于对直接对角线排序解相关算法的预排序思想,采用矩阵分解后对角线元素中最小值并将其转换到对应对角线位置的方式,用更少的迭代次数达到比直接对角线排序更好的解相关效果。将新算法与其他算法进行仿真比较得出,其性能优于直接对角线排序算法,解相关功能与联合解相关算法等效,且计算效率略占优势。 相似文献
109.
数控切削加工是最终保证钛合金宽弦空心风扇叶片制造精度的重要技术手段。分析了采用超塑成形/扩散连接技术制作的钛合金宽弦空心风扇叶片结构特征以及毛坯状态,指出了后续的数控切削加工应突破复杂曲面结构测量、加工变形控制以及切削加工误差补偿等关键技术。提出了开发集测量、分析和加工为一体的数控切削加工集成系统的研究思路,可为实现钛合金宽弦空心风扇叶片加工精度的精确控制提供指导。 相似文献
110.