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1.
载波相位周跳检测与修复是实现GPS高精度定位的难点之一。小波变换具有空间局部性好的特点,本文利用小波变换把载波相位观测量分解为高频和低频分量,提出了利用小波系数局部极值点检测相位周跳的方法。基于载波相位和多普勒频率共同约束的埃尔米特多项式,外推周跳时刻载波相位,与观测值比较确定周跳的大小,从而修复周跳。利用飞机实际观测数据和仿真的高动态数据进行了计算,给出了计算结果,表明该方法可以对高动态情况下载波相位周跳进行准确探测和修复。  相似文献   

2.
载波相位观测值已越来越多地应用到增强系统中,由于观测环境影响,载波相位测量不可避免地会产生周跳,周跳的成功探测与修复是提高导航定位精度的一个重要因素。针对北斗卫星导航系统三频观测数据,分析其不同线性组合观测值的特性,选取合适的组合系数,形成一个伪距相位组合和两个无几何相位组合,采用历元间差分的方法探测和修复组合观测值的周跳,然后还原求解出原始信号的周跳,最后通过实验验证了该方法的可行性。  相似文献   

3.
当前具备载波相位测量的GNSS接收机能够实现高精度定位,但其成本高、体积大,难以广泛应用于大批量的手机、平板电脑等消费电子产品。针对ST公司的STA8090接收机芯片并改进其软件和晶振以获得载波相位信息,采用双差和三差方程测试评估载波相位测量的精度,与测绘型接收机进行对比。基于改进的STA8090接收机芯片构建双天线定姿系统原型样机,静态测试评估了相对定位和定向精度。研究结果表明,千米级静态相对定位精度优于0.01m,在1.23m基线条件下定向精度优于0.1°。因此,采用低成本GNSS接收机芯片实现高精度载波相位测量的技术方案是可行的,具备广阔的市场应用前景。  相似文献   

4.
我国已全面进入5G时代,为研究5G微基站电磁环境对全球卫星导航系统(GNSS)接收机工作性能及观测数据质量的影响,基于自主建设差分基准站的零基线观测数据,采用静态相对定位方法,通过观测数据质量分析、载波与伪距的双差残差序列、对比相对静态定位结果,综合评估5G微基站对GNSS接收机工作性能及观测数据质量的影响。实验表明:当前环境下,GNSS差分基准站及接收机处于近距离建设的5G微基站时,载波相位观测噪声变化范围为5cm,伪距观测噪声变化范围为15cm,零基线测试结果变化范围为1mm。在实验距离内,5G微基站对于GNSS接收机工作性能及数据观测质量影响较小,可以忽略。  相似文献   

5.
为进一步拓展全球导航卫星系统(Global Navigation Satellite System,GNSS)测姿应用领域,提升多天线瞬时测姿性能,解决GNSS载波相位观测定姿中的模糊度搜索耗时和周跳探测复杂等问题,提出了一种基于乘性误差四元数的多天线姿态解算方法。使用滤波技术将姿态约束信息通过状态模型和当前观测模型融合,对模糊度进行降权处理,免去周跳探测步骤,从而实现瞬时姿态解算。仿真实验结果表明,新算法既保证了解算效果,又增加了数据处理的灵活性,且耗时更符合实时性需求。  相似文献   

6.
低成本消费级GNSS芯片相较于传统测绘级接收机在体积、功耗等方面具有突出优势,在未来无人驾驶、物联网等新兴应用领域具有极大潜力。然而当前低成本GNSS芯片的观测量存在非常严重的噪声和误差,为了改善观测质量,低成本芯片正逐渐从单频向多频过渡。首先调研了目前低成本GNSS接收机对多频信号的支持情况,然后介绍了北斗三号多频观测在电离层延迟和整周模糊度估计等方面的应用。通过对真实数据的采集和分析,针对当前原始观测量存在的诸多问题,提出了具体的预处理方案,并在此基础上开展了信号强度、电离层和模糊度实验。实验结果表明,基于华为Mate 40手机的低成本GNSS方案的北斗三频电离层延迟估计误差的均值为-2.97m,三频整周模糊度估计的成功率达93.8%,相较于单频整周模糊度估计的3.11%成功率有显著提升。  相似文献   

7.
为了满足卫星接收机对多个时间系统统一管理的需求,设计了一种适用于多系统GNSS接收机的时间管理模型,用于维持和处理接收机内部时间.详述了接收机时间初始化、维持、钟差估计的方法与修正策略.基于DSP6671平台对模型进行了实验验证,并分析了不同定位模式下的钟差变化特性,以及两种钟差调整策略对伪距、载波相位的非差和双差的影...  相似文献   

8.
高精度定位通常采用载波相位测距,而当全球导航卫星系统(GNSS)接收机信号受到遮挡、存在干扰等环境影响时,载波相位易出现跟踪不连续的问题,从而影响定位精度。针对这一问题提出了一种采用矢量结构对载波相位的预测方法,预测值辅助载波相位的跟踪,为了使预测值对载波相位跟踪效果更好,使用接收信号的质量确定预测值对载波相位的影响比例。最后,试验验证了通过矢量结构对载波相位进行预测,有效地改善了载波相位的跟踪能力,从而对载波相位连续跟踪,并有效地提高定位精度。  相似文献   

9.
Blewitt周跳探测方法的改进   总被引:2,自引:0,他引:2  
在精密单点定位中,能否准确可靠地探测载波相位观测量中出现的周跳,直接影响到定位的精度及可靠性。本文概述了Blewitt周跳探测方法的基础原理,并对周跳的探测算法进行了改进,将电离层残差组合观测量一次差的变化是否超限作为周跳存在与否的判断依据。最后利用一段人为加入了几个典型周跳组合的双频观测数据进行验证,结果表明,改进后的算法能准确探测出两个载波上大于1周的任意周跳,提高了周跳探测的准确性。  相似文献   

10.
多径效应对GPS载波相位观测量的影响   总被引:1,自引:0,他引:1  
孙礼  王银锋  张其善 《航空学报》1998,19(Z1):76-78
推导了GPS接收机中多径效应引入的最大载波相位跟踪误差的闭合形式。得到以下结论:当直达信号跟踪误差不超过1码片时,最大载波测相多径误差为1/4周,该值出现在测码伪距多径误差最小的情况下;当直达信号跟踪误差超过或等于1码片时,接收机跟踪多径信号,信号误检发生。  相似文献   

11.
GPS code and carrier multipath mitigation using a multiantennasystem   总被引:1,自引:0,他引:1  
Multipath is a major source of error in high precision Global Positioning System (GPS) static and kinematic differential positioning. Multipath accounts for most of the total error budget in carrier phase measurements in a spacecraft attitude determination system. It is a major concern in reference stations, such as in Local Area Augmentation Systems (LAAS), whereby corrections generated by a reference station, which are based on multipath corrupted measurements, can significantly influence the position accuracy of differential users. Code range, carrier phase, and signal-to-noise (SNR) measurements are all affected by multipath, and the effect is spatially correlated within a small area. In order to estimate and remove code and carrier phase multipath, a system comprising a cluster of five GPS receivers and antennas is used at a reference station location. The spatial correlation of the receiver data, and the known geometry among the antennas, are exploited to estimate multipath for each satellite in each antenna in the system. Generic receiver code and carrier tracking loop discriminator functions are analyzed, and relationships between receiver data, such as code range, carrier phase, and SNR measurements, are formulated and related to various multipath parameters. A Kalman filter is described which uses a combination of the available information from the antennas (receivers) in the multiantenna cluster to estimate various multipath parameters. From the multipath parameters, the code range and carrier phase multipath is estimated and compensated. The technique is first tested on simulated data in a controlled multipath environment. Results are then presented using field data and show a significant reduction in multipath error  相似文献   

12.
Aiming at mitigating multipath effect in dynamic global positioning system (GPS) satellite navigation applications, an approach based on channel blind equalization and real-time recursive least square (RLS) algorithm is proposed, which is an application of the wireless communication channel equalization theory to GPS receiver tracking loops. The blind equalization mechanism builds upon the detection of the correlation distortion due to multipath channels; therefore an increase in the number of correlator channels is required compared with conventional GPS receivers. An adaptive estimator based on the real-time RLS algorithm is designed for dynamic estimation of multipath channel response. Then, the code and carrier phase receiver tracking errors are compensated by removing the estimated multipath components from the correlators’ outputs. To demonstrate the capabilities of the proposed approach, this technique is integrated into a GPS software receiver connected to a navigation satellite signal simulator, thus simulations under controlled dynamic multipath scenarios can be carried out. Simulation results show that in a dynamic and fairly severe multipath environment, the proposed approach achieves simultaneously instantaneous accurate multipath channel estimation and significant multipath tracking errors reduction in both code delay and carrier phase.  相似文献   

13.
北斗导航定位过程中,传统的周跳探测与修复方法缺乏检验环节,无法保证修复结果的可靠性。为此,提出了一种级联式小波变换结合NARX神经网络多步循环预测修复的方法处理周跳问题。该方法通过构造载波相位双差模型检验量,探测周跳发生历元,采用NARX神经网络预测方法修复周跳,利用优选小波基函数进行周跳修复效果检验。实验证明,相较于经验模态分解和变分模态分解等模态分解法,优选小波神经网络周跳探测与修复方法可用于小周跳探测并判断出周跳正负性;构造的NARX神经网络周跳修复模型,解决了普通神经网络模型和传统多项式拟合法容易造成的二次奇异值问题。相较于长短期记忆(LSTM)和门控循环单元(GRU)深度学习神经网络模型,周跳预测精度分别提高了45.2%和55.9%。  相似文献   

14.
智能手机作为位置服务的重要载体,由于其天线结构等因素,导致利用手机原始观测值进行定位不能满足高精度定位的需求。针对这一问题,提出了利用广域增强技术,提高手机单频原始观测值实时定位精度的方法。首先,针对手机观测值周跳较为严重的问题,对单频载波相位观测值进行了周跳探测。然后,利用手机观测值获取的伪距、载波相位以及IGS站播发的轨道和钟差改正实现增强定位。实验结果表明,定位精度收敛到1m约需要20min,收敛后水平方向和垂直方向精度分别提高了66.7%和28.9%,平面精度达到1.5m。  相似文献   

15.
姚彦鑫  杨东凯  张其善 《航空学报》2010,31(10):2004-2009
 研究全球定位系统(GPS)多径信号估计的问题。通过分析自适应滤波器的原理,建立了数字中频信号处理的数学模型,提出一种用自适应滤波实现GPS多径幅度、码相位和载波相位估计的方法。该方法采用不同延迟的伪随机序列对信号进行解扩、解调和累加,得到了作为期望信号的系列自适应滤波相关值。对该方法与其他3种方法进行了理论上的分析比较,得出本方法具有信噪比高、自适应滤波性能好、带有码相位信息和不存在载波模糊度问题等优点。根据各种滤波器算法的特点和本应用的需求,给出了选用递归最小二乘算法实现的方法。通过计算机仿真,验证了提出的方法能够在14 dB的信噪比下,以1个采样间隔的时间延迟分辨率和0.005周的载波相位估计精度估计出GPS L1的多径信号。  相似文献   

16.
SNR-based multipath error correction for GPS differential phase   总被引:4,自引:0,他引:4  
Carrier phase multipath is currently the limiting error source for high precision Global Positioning System (GPS) applications such as attitude determination and short baseline surveying. Multipath is the corruption of the direct GPS signal by one or more signals reflected from the local surroundings. Multipath reflections affect both the carrier phase measured by the receiver and signal-to-noise ratio (SNR). A technique is described which uses the SNR information to correct multipath errors in differential phase observations. The potential of the technique to reduce multipath to almost the level of receiver noise was demonstrated in simulations. The effectiveness on real data was demonstrated with controlled static experiments. Small errors remained, predominantly from high frequency multipath. The low frequency multipath was virtually eliminated. The remaining high frequency receiver noise can be easily removed by smoothing or Kalman filtering  相似文献   

17.
Adaptive SNR-based carrier phase multipath mitigation technique   总被引:3,自引:0,他引:3  
An improved technique that mitigates specular multipath in Global Positioning System (GPS) differential carrier phase measurements is described. It adaptively estimates the spectral parameters (frequency, amplitude, phase offset) of multipath in the associated signal-to-noise ratio (SNR), and then constructs a profile of the multipath error in the carrier phase. A multipath correction is subsequently made by subtracting the profile from the actual phase measurement data. The technique is demonstrated on ground based experimental data, as well as flight data from the atmospheric research satellite CRISTA-SPAS. Ground experiments were conducted on static platforms in severe multipath environments. Multipath was deliberately introduced by either strategic placement of reflectors or electronic injection. This allowed for some control over the strength and frequency of the multipath. Averaging the results from 43 ground and 18 flight data sets, the differential carrier phase multipath was reduced by 47%. The complete results for both ground and flight tests are presented and are accompanied by discussions of individual cases  相似文献   

18.
BDS(BeiDou satellite navigation System,北斗卫星导航系统)的MEO/IGSO (Medium Earth Orbit/Inclined Geosynchronous Satellite Orbit,中圆地球轨道/倾斜地球同步轨道)卫星在D1导航电文上调制了NH(Neumann-Hoffman,奈曼-霍夫曼)二次编码,而在GEO(Geostationary Earth Orbit,地球静止轨道)卫星上未使用.利用北斗MEO/IGSO和GEO卫星进行差分定位时,采用不同NH码符号映射规则的接收机之间会出现半周载波相位偏差的问题,严重影响RTK (Real-Time Kinematic,实时动态差分)应用.通过分析半周载波相位偏差的形成机理,从单差、双差、三差应用角度分别研究了半周载波相位偏差的影响.分析结果表明,接收机NH码符号映射规则与卫星不一致时,接收机直接用乘法器对NH码解调将存在反相,也即引入了半周载波相位偏差;在满足特定条件下,单差和双差应用时会存在半周载波相位偏差的问题;三差应用时不存在半周载波相位偏差的问题.最后,提出了需在北斗接口控制文件中明确卫星NH码调制或映射规则的修订建议.  相似文献   

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