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791.
《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2023,71(6):2879-2891
Tight integration can enhance the model strength and positioning performance by considering the characteristic of differential inter-system bias (DISB), especially in obstructed environments. However, limited work emphasizes the comprehensive analysis of five-frequency DISBs between BDS-3 and other systems considering the receiver type, receiver configuration, and antenna type. In addition, the overlapping DISBs between BDS-3 and BDS-2 are also in great demand for further investigation since they are often regarded as one system. In this study, one DISB-float model is introduced to estimate the DISBs, and one DISB-fixed model and one DISB-free model are formulated to enhance the model strength of tight integration. Four dedicated datasets were collected to estimate the DISBs, which are also comprehensively analyzed considering the receiver type, receiver configuration, and antenna type. The results show that the DISBs between BDS-3 and other systems are rather stable over a certain period and are related to the receiver type and receiver configuration, whereas are not related to the antenna type. More interestingly, the B1I code DISB between BDS-3 and BDS-2 exhibits significant magnitude with a mean value of ?1.44 m for the baseline composed of two different receivers. In this case, the B1I code DISB must be considered and the tight integration between BDS-3 and BDS-2 considering its calibration can improve the positioning performance. Besides, the tight integration of the DISB-fixed model can significantly improve the positioning accuracy between multiple GNSS. Compared to the loose integration, the improvement of 60.6 %, 56.6 %, and 61.2 % can be obtained in the E, N, and U directions, when only two satellites are available for each system. In real obstructed environments, the tight integration of the DISB-free model can also improve the positioning performance in terms of positioning availability and accuracy, as well as the ambiguity resolution performance. 相似文献
792.
CSK调制信号能够满足GNSS厘米级高精度服务的高信息速率播发需求,正受到广泛关注。针对CSK调制信号只能用于播发数据,而不能用于提供测量观测量的问题,对CSK调制信号的跟踪方法进行了研究。通过权衡性能和实现复杂度,提出了两种跟踪方法,方法一跟踪精度高但实现复杂度高,方法二以损失跟踪精度为代价降低了实现复杂度。理论和仿真分析结果表明,所提方法一在CSK调制信号载噪比高于40dB-Hz时,可提供与BPSK信号相当的跟踪性能。方法二相比方法一所需相关器资源降低一半,性能损失约4dB。论文的研究成果可为CSK调制信号在GNSS高精度信号体制中的应用提供支持。 相似文献
793.
《中国航空学报》2022,35(8):168-178
In the missile-borne Strapdown Inertial Navigation System/Global Navigation Satellite System (SINS/GNSS) integrated navigation system, due to the factors such as the high dynamics, the signal blocking by obstacles, the signal intefereces, etc., there always exist pulse interferences or measurement information interruptions in the satellite receiver, which make nonstationary measurement process. The traditional Kalman Filter (KF) can tackle the state estimation problem under Gaussian white noise, but its performance will be significantly reduced under non-Gaussian noises. In order to deal with the non-Gaussian conditions in the actual missile-borne SINS/GNSS integrated navigation systems, a Maximum Versoria Criterion Extended Kalman Filter (MVC-EKF) algorithm is proposed based on the MVC and the idea of M-estimation, which assigns a smaller weight to the anomalous measurements so as to suppress the influence of anomalous measurements on the state estimation while maintaining a relatively low calculation cost. Finally, the integrated navigation simulation experiments prove the effectiveness and robustness of the proposed algorithm. 相似文献
794.
795.
《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2023,71(3):1510-1524
With the development of Global Navigation Satellite System (GNSS), the detection of precipitable water vapor (PWV) using the GNSS atmospheric sounding technique becomes a research interest in GNSS meteorology. In the conversion of zenith tropospheric delay (ZTD) to PWV, the weighted mean temperature (Tm) plays a crucial role. Generally, the Tm estimated by the linear regression models based on surface temperature (Ts) cannot meet the requirement for global use, and the accuracy of Tm derived from the empirical models is limited. In this study, a new Tm model, named GGTm-Ts model, was developed using the global geodetic observing system (GGOS) atmosphere Tm data and European Centre for Medium-Range Weather Forecasts (ECMWF) data from 2011 to 2015. Resting upon a global 2.5°*2° grid of coefficients of Tm-Ts linear function, the new model can provide Tm at any site in two modes, one for the case with measured Ts provided, i.e., the accurate mode, the other for the case that Ts provided by a subroutine, i.e., the normal mode. The performance of GGTm-Ts model was assessed against the Bevis formula, GPT2w and GPT2wh model using different data sources in 2016-the GGOS atmosphere and radiosonde data. The results show that the GGTm-Ts model in accurate mode achieves best performance with an improvement of 46.9 %/15.3 %, 37.8 %/19.5 % and 34.4 %/14.2 % over other three models in the GGOS atmosphere/radiosonde comparison. For the normal mode, the GGTm-Ts model outperforms the GPT2w model and achieves equivalence results with the GPT2wh model. Moreover, the impact of Tm on GNSS-PWV was analyzed to validate the performance of the GGTm-Ts model. 相似文献
796.
信号认证是满足全球卫星导航系统(GNSS)民用信号安全性需求的关键,相比于导航电文认证(NMA),扩频码认证(SCA)具有更强的安全性。为了在实现SCA的同时不对非认证用户造成影响,提出了一种基于码片幅度调制(CAM)的导航信号SCA方法,对民用信号的扩频码的码片幅度进行了调制,实现了在扩频码层面的认证特征的引入。为了验证所提方法的有效性,采用理论和仿真分析,与GPS L1C采用的Chimera SCA方法进行了比较。结果表明,所提方法在检测性能方面提升了2.55~2.78 dB。研究成果可为下一代高安全卫星导航信号的设计提供支持。 相似文献
797.
多系统多频精密单点定位(PPP)因具有增加观测冗余信息、提高系统性能可靠性和提升导航性能指标等优势而被广泛研究.非差非组合PPP模型直接使用原始伪距和载波相位观测值,不做任何线性组合,适合多系统多频率的PPP数据解算.目前,各个系统虽已提供3个或更多频率,但除北斗系统外,其余系统无法保证全星座都提供三频信号,使得多系统多频PPP的性能分析多采用多系统双频或单系统三频模型,没有充分利用多系统多频的观测信息.因此,采用多系统混频模型进行非差非组合PPP,该模型的具体表述为北斗三频+GPS双频+GLONASS双频PPP模型,充分利用可用的观测信息,提升了冗余度.利用CUT0、JFNG、NNOR、SIN1这4个测站的观测数据以及MGEX的精密轨道和钟差产品进行仿真实验,实验结果表明,多系统混频非差非组合PPP相较多系统双频非差非组合PPP的平均静态解RMS在东向提高了9.6%,北向相当,天向提高了11%;平均动态解RMS在东向提高了7.3%,北向相当,天向提高了5.7%. 相似文献
798.
799.
在卫星导航系统动态定位中,采用基于瞬时多普勒观测量的最小二乘法确定速度,当载体高机动时,多普勒误差迅速增大,从而导致测速精度大幅度降低。针对该问题,提出一种同时实现动态模型自适应修正和观测模型自适应更新的Kalman滤波算法。算法采用滑动窗方式来建立实时更新的动态模型参数,使当前统计模型自适应地跟踪载体的动态特性。此外,算法提出观测模型的自适应更新方法,通过设置载体状态判决门限,高、中机动时仅进行受动态应力影响小的伪距更新,低机动下添加精度较高的伪距率更新。通过Sprient GSS8000模拟器产生的动态场景验证表明,相对于最小二乘法和常规Kalman滤波算法,提出的自适应Kalman滤波算法能够全面提高载体在多种运动状态下的测速精度。 相似文献
800.
针对运动场中超宽带(UWB)可移动基站的位置获取需要人工测量、定位不方便的问题,提出了基于飞行时间(TOF)的UWB可移动基站快速自定位方法.首先根据基站布局情况确定局部坐标系,建立基于UWB基站间相互测距信息的各基站坐标方程,采用最小二乘法对各基站的坐标进行解算,进而分析其定位误差.最后通过实验验证了算法的可行性和稳定性.实验结果表明,可移动基站平均定位精度在0.05m以内.相对于传统的人工测量方式,基站自定位可有效节省基站布设时间,减少工作量. 相似文献