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1.
北斗三频无几何相位组合周跳探测与修复   总被引:1,自引:0,他引:1  
推导了Compass三频无几何组合周跳探测的理论模型,并分析了探测精度。通过多频组合理论构造了较优的无几何周跳探测检验量,并对存在的不敏感周跳组合进行了分析。为了保证探测的完备性,联合运用两个合适的无几何组合作为探测检验组合进行周跳探测,并筛选了较优的探测检验组合。针对无几何组合最多只能两个线性无关,无法修复三个频点上的周跳的问题,探索了无几何探测检验组合联合一个伪距/载波组合进行周跳修复的方法。最后利用Compass三频实测数据,选用了无几何探测检验组合(-1,-1,2)与(-1,2,-1)和伪距/载波组合(1,3,-4)进行了验证分析。试验表明,该方法能够探测出所有大小的周跳,并且可以单历元修复周跳值,可适用于动态导航定位,有一定的实用性。  相似文献   

2.
Real-time cycle slip detection in triple-frequency GNSS   总被引:7,自引:2,他引:5  
The modernization of the global positioning system and the advent of the European project Galileo will lead to a multifrequency global navigation satellite system (GNSS). The presence of new frequencies introduces more degrees of freedom in the GNSS data combination. We define linear combinations of GNSS observations with the aim to detect and correct cycle slips in real time. In particular, the detection is based on five geometry-free linear combinations used in three cascading steps. Most of the jumps are detected in the first step using three minimum-noise combinations of phase and code observations. The remaining jumps with very small amplitude are detected in the other two steps by means of two-tailored linear combinations of phase observations. Once the epoch of the slip has been detected, its amplitude is estimated using other linear combinations of phase observations. These combinations are defined with the aim of discriminating between the possible combinations of jump amplitudes in the three carriers. The method has been tested on simulated data and 1-second triple-frequency undifferenced GPS data coming from a friendly multipath environment. Results show that the proposed method is able to detect and repair all combinations of cycle slips in the three carriers.  相似文献   

3.
针对电离层活跃期或磁暴发生时,现有周跳探测算法未能正确探测并修复周跳的问题,提出了基于数据质量分析的电离层总电子含量变化率(以下简称电离层速率,TECR)拟合残差算法。通过对电离层拟合残差进行数据质量分析,可自适应确定最优拟合历元数,利用此历元数拟合得到的TECR拟合值可有效削弱电离层延迟影响。为保证周跳修复的准确性,采用搜索再判定与TECR补充检测方法对周跳修复值进行验证与确认。通过高电离层延迟条件下的实测数据对本文算法进行验证分析,实验结果表明该方法能够消除电离层延迟影响,实现电离层活跃期时的周跳探测与修复。  相似文献   

4.
目前对相位观测值周跳的探测和修复已有多种方法,但是各种方法都不是很完善。通过用相位观测值相邻历元求差法和多项式拟合法对周跳进行探测和修复,算例结果表明相位观测值相邻历元求差法不仅能准确地锁定发生小周跳的历元,而且能高效地修复观测值。该方法执行效率高,实用性强,尤其适合动态定位的应用。  相似文献   

5.
周跳探测与修复是高精度动态GPS定位的关键技术之一,直接影响模糊度在航解算的效率。针对动态相对定位中周跳探测方法“三差法”的不足,提出一种基于站际历元二次差模型进行探测与修复周跳的新方法。首先对站际历元间二次差观测值进行粗差探测,以确定发生周跳的卫星以及周跳初值;然后基于残差平方和最小原则搜索周跳备选组合并修复周跳。理论分析和实验结果均表明,当有效共视卫星多于4颗时,大多数情况下,新方法可以准确定位并修复周跳。  相似文献   

6.
三频观测量能形成具有更长波长、更小噪声、更小电离层影响等优良特性的组合观测量,有利于提高周跳探测和修复的精度。本文推导了伪距相位组合探测周跳的阈值条件;提出了周跳确定成功率的概念;并从提高周跳确定成功概率出发,给出了伪距相位组合选取的标准和方法;最后利用一组实测GPS三频数据进行了验证。结果表明,在数据采样率较高、历元间电离层延迟变化可忽略时,根据文中提出原则选取的最优伪距相位组合可实时探测和修复三频非差观测数据中的所有周跳。  相似文献   

7.
基于小波变换的周跳探测与修复   总被引:2,自引:1,他引:1  
探测和修复周跳一直是GPS定位中的关键问题。利用小波变换对相位减伪距观测量进行周跳探测。首先介绍小波变换周跳探测的一般方法,然后在此基础上提出改进。改进方法可以对周跳进行探测和直接修复,进而探测和修复多次周跳,同时有效地克服一般方法可能出现探测失误的缺点。这种改进方法的效果在实验中得到验证。  相似文献   

8.
为了充分利用各频率观测值信息,提出了一种非差非组合的北斗卫星导航系统长距离基准站间整周模糊度解算方法。首先,直接利用不同频率的观测值建立误差观测方程,并采用随机游走策略估计相对天顶对流层湿延迟误差和电离层延迟误差,增加历元间的约束;然后,采用一种非差整周模糊度实时线性计算方法,依次得到基准站网当前历元所有卫星的非差整周模糊度,解决了在基准星变换时,模糊度需要承接或者重新进行法方程叠加的问题;最后,使用实测数据进行方法验证,结果表明,各基准站模糊度平均固定速度为20个历元(采样间隔1 s),可快速实现基准站载波相位整周模糊度解算。由于所提方法充分利用了各频率观测值信息,避免了线性组合放大噪声对整周模糊度固定的影响,其模糊度固定成功率与无电离层组合法相比有较大的提高。  相似文献   

9.
提出了一种适用于实时GPS精密单点定位的周跳探测与修复的新算法。该算法步骤为:①利用M-W组合和电离层残差组合初步确定没有发生周跳和可能发生周跳的卫星;②利用当前历元与前一(或几个)历元的L1、L2和Lw观测值和第一步得出的没有发生周跳的卫星信息,采用基于历元间差分观测值的周跳处理模型对可能发生周跳的卫星进行周跳探测;③对第二步中周跳处理失败的卫星进行进一步的精化处理,以尽可能修复周跳。实验表明,新算法在实时GPS精密单点定位中可以准确地探测并修复周跳。  相似文献   

10.
Mitigating the impact of ionospheric cycle slips in GNSS observations   总被引:1,自引:0,他引:1  
Processing of data from global navigation satellite systems (GNSS), such as GPS, GLONASS and Galileo, can be considerably impeded by disturbances in the ionosphere. Cycle-slip detection and correction thus becomes a crucial component of robust software. Still, dealing with ionospheric cycle slips is not trivial due to scintillation effects in both the phase and the amplitude of the signals. In this contribution, a geometry-based approach with rigorous handling of the ionosphere is presented. A detailed analysis of the cycle-slip correction process is also tackled by examining its dependence on phase and code noise, non-dispersive effects and, of course, the ionosphere. The importance of stochastic modeling in validating the integer cycle-slip candidates is emphasized and illustrated through simulations. By examining the relationship between ionospheric bias and ionospheric constraint, it is shown that there is a limit in the magnitude of ionospheric delay variation that can be handled by the cycle-slip correction process. Those concepts are applied to GNSS data collected by stations in northern Canada, and show that enhanced cycle-slip detection can lead to decimeter-level improvements in the accuracy of kinematic PPP solutions with a 30-s sampling interval. Cycle-slip correction associated with ionospheric delay variations exceeding 50 cm is also demonstrated, although there are risks with such a procedure and these are pointed out.  相似文献   

11.
针对相位减伪距法只能探测出大周跳而对小周跳无能为力的问题,提出将相位减伪距法应用于双频载波相位周跳的探测与修复中。对采样率为1s、15s和30s不含周跳的观测值分别加入1周到40周不等大小的周跳,采用相位减伪距法分别对加入周跳的观测值进行处理。结果表明,该方法对于采样率为15s和30s的观测值仍然保持其优秀的大周跳探测能力,对采样率为1s的载波相位观测值则能够探测出小于1周的周跳,且其周跳探测分辨率能达到0.3周的高周跳分辨率。与其他周跳探测方法相比,该方法需要的信息量和计算量更小,效率高,算法易于计算机实现,且具有很强的实用性。  相似文献   

12.
Bayesian methods for outliers detection in GNSS time series   总被引:1,自引:0,他引:1  
This article is concerned with the problem of detecting outliers in GNSS time series based on Bayesian statistical theory. Firstly, a new model is proposed to simultaneously detect different types of outliers based on the conception of introducing different types of classification variables corresponding to the different types of outliers; the problem of outlier detection is converted into the computation of the corresponding posterior probabilities, and the algorithm for computing the posterior probabilities based on standard Gibbs sampler is designed. Secondly, we analyze the reasons of masking and swamping about detecting patches of additive outliers intensively; an unmasking Bayesian method for detecting additive outlier patches is proposed based on an adaptive Gibbs sampler. Thirdly, the correctness of the theories and methods proposed above is illustrated by simulated data and then by analyzing real GNSS observations, such as cycle slips detection in carrier phase data. Examples illustrate that the Bayesian methods for outliers detection in GNSS time series proposed by this paper are not only capable of detecting isolated outliers but also capable of detecting additive outlier patches. Furthermore, it can be successfully used to process cycle slips in phase data, which solves the problem of small cycle slips.  相似文献   

13.
Ionospheric scintillation produces strong disruptive effects on global navigation satellite system (GNSS) signals, ranging from degrading performances to rendering these signals useless for accurate navigation. The current paper presents a novel approach to detect scintillation on the GNSS signals based on its effect on the ionospheric-free combination of carrier phases, i.e. the standard combination of measurements used in precise point positioning (PPP). The method is implemented using actual data, thereby having both its feasibility and its usefulness assessed at the same time. The results identify the main effects of scintillation, which consist of an increased level of noise in the ionospheric-free combination of measurements and the introduction of cycle-slips into the signals. Also discussed is how mis-detected cycle-slips contaminate the rate of change of the total electron content index (ROTI) values, which is especially important for low-latitude receivers. By considering the effect of single jumps in the individual frequencies, the proposed method is able to isolate, over the combined signal, the frequency experiencing the cycle-slip. Moreover, because of the use of the ionospheric-free combination, the method captures the diffractive nature of the scintillation phenomena that, in the end, is the relevant effect on PPP. Finally, a new scintillation index is introduced that is associated with the degradation of the performance in navigation.  相似文献   

14.
Cycle slip detection and repair is an important issue in the GPS data processing. Different methods have been developed to detect and repair cycle slips on undifferenced , single- or double-differenced observations. The issue is still crucial for high-precision GPS positioning, especially for the undifferenced GPS observations. A method is proposed to fix cycle slips based on the generalized likelihood ratio (GLR) test. The method has a good performance on cycle slip fixing of undifferenced carrier phase observations on individual frequencies, either on L1 or on L2, without making a linear combination among the observables. The functional model is a piecewise cubic curve fitted to a number of consecutive data using the least squares cubic spline approximation (LS-CSA). For fixing the cycle slips, an integer estimation technique is employed to determine the integer values from the float solution. The performance of the proposed method is then compared with the existing two methods using simulated data. The results on a few GPS data sets with sampling rate of 1 Hz or higher confirm that this method can detect and correct all simulated cycle slips regardless of the size of the cycle slip or the satellite elevation angle. The efficacy of the method is then investigated on the GPS data sets with lower sampling rates of 5, 10, and 30 s. The results indicate that the proposed method always performs the best for the data sets considered. This is thus an appropriate method for cycle slip detection and repair of single-frequency GPS observations.  相似文献   

15.
针对非差相位观测值中误差来源较多,对周跳探测不够敏感等问题,双差观测值可大幅削弱相关性较强的误差,较好地探测序列中小的周跳。该文以GPS双差观测序列为研究对象,运用卡尔曼滤波算法,建立双差观测序列周跳探测与修复模型。最后通过理论和实验分析,验证了模型的有效性和可靠性。  相似文献   

16.
本文分析了GPS三频组合观测值在波长、电离层误差和偶然误差等方面的特性,并定义了衡量其特性的3种指标;结合传统的伪距/相位组合法,探讨了三频组合观测值探测与修复周跳的原理和方法。利用模拟的L5观测数据,进行了多种情况下周跳的探测与修复。结果表明:该方法能在单历元间准确探测出各个频率上发生的大、小不等的周跳。相对于原始观测值,长波长的三频组合观测值可以更有效地探测与修复周跳。  相似文献   

17.
针对全球卫星导航系统(Global Navigation Satellite System,GNSS)信号中部分周跳难以探测的问题,在三维坐标系中分析了不敏感周跳的产生及分布,研究了探测阈值对不敏感周跳的影响,进而研究了多个组合量联合探测周跳的效果,提出了针对不敏感周跳的组合系数选取方法。该方法根据不敏感周跳的探测量构建组合系数的函数模型,在所有可能的三频无几何相位(geometry free combination,GF)组合系数中选取最敏感的组合系数,可探测3个频点上跳变量相近的不敏感周跳。北斗三频实测数据证实,多个GF组合有效提升了不敏感周跳的探测概率,数量以两个为宜,选取的组合量有效提升了不敏感周跳的探测概率。  相似文献   

18.
提出了一种适用于实时动态周跳修复的方法。该方法利用多普勒观测值(或伪距),包括产生候选值、筛选候选值、确定候选值3个步骤。与已有的方法相比,该方法无需对观测值进行预报,适用于连续周跳的探测。理论推导和试验结果表明,在发生连续周跳时该方法能够探测出所有的周跳。  相似文献   

19.
As a first step towards studying the ionosphere with the global navigation satellite system (GNSS), leveling the phase to the code geometry-free observations on an arc-by-arc basis yields the ionospheric observables, interpreted as a combination of slant total electron content along with satellite and receiver differential code biases (DCB). The leveling errors in the ionospheric observables may arise during this procedure, which, according to previous studies by other researchers, are due to the combined effects of the code multipath and the intra-day variability in the receiver DCB. In this paper we further identify the short-term temporal variations of receiver differential phase biases (DPB) as another possible cause of leveling errors. Our investigation starts by the development of a method to epoch-wise estimate between-receiver DPB (BR-DPB) employing (inter-receiver) single-differenced, phase-only GNSS observations collected from a pair of receivers creating a zero or short baseline. The key issue for this method is to get rid of the possible discontinuities in the epoch-wise BR-DPB estimates, occurring when satellite assigned as pivot changes. Our numerical tests, carried out using Global Positioning System (GPS, US GNSS) and BeiDou Navigation Satellite System (BDS, Chinese GNSS) observations sampled every 30 s by a dedicatedly selected set of zero and short baselines, suggest two major findings. First, epoch-wise BR-DPB estimates can exhibit remarkable variability over a rather short period of time (e.g. 6 cm over 3 h), thus significant from a statistical point of view. Second, a dominant factor driving this variability is the changes of ambient temperature, instead of the un-modelled phase multipath.  相似文献   

20.
GNSS algebraic structures   总被引:4,自引:3,他引:1  
The first objective of this paper is to show that some basic concepts used in global navigation satellite systems (GNSS) are similar to those introduced in Fourier synthesis for handling some phase calibration problems. In experimental astronomy, the latter are at the heart of what is called ‘phase closure imaging.’ In both cases, the analysis of the related structures appeals to the algebraic graph theory and the algebraic number theory. For example, the estimable functions of carrier-phase ambiguities, which were introduced in GNSS to correct some rank defects of the undifferenced equations, prove to be ‘closure-phase ambiguities:’ the so-called ‘closure-delay’ (CD) ambiguities. The notion of closure delay thus generalizes that of double difference (DD). The other estimable functional variables involved in the phase and code undifferenced equations are the receiver and satellite pseudo-clock biases. A related application, which corresponds to the second objective of this paper, concerns the definition of the clock information to be broadcasted to the network users for their precise point positioning (PPP). It is shown that this positioning can be achieved by simply having access to the satellite pseudo-clock biases. For simplicity, the study is restricted to relatively small networks. Concerning the phase for example, these biases then include five components: a frequency-dependent satellite-clock error, a tropospheric satellite delay, an ionospheric satellite delay, an initial satellite phase, and an integer satellite ambiguity. The form of the PPP equations to be solved by the network user is then similar to that of the traditional PPP equations. As soon as the CD ambiguities are fixed and validated, an operation which can be performed in real time via appropriate decorrelation techniques, estimates of these float biases can be immediately obtained. No other ambiguity is to be fixed. The satellite pseudo-clock biases can thus be obtained in real time. This is not the case for the satellite-clock biases. The third objective of this paper is to make the link between the CD approach and the GNSS methods based on the notion of double difference. In particular, it is shown that the information provided by a maximum set of independent DDs may not reach that of a complete set of CDs. The corresponding defect is analyzed. One of the main results of the corresponding analysis concerns the DD–CD relationship. In particular, it is shown that the DD ambiguities, once they have been fixed and validated, can be used as input data in the ‘undifferenced CD equations.’ The corresponding algebraic operations are described. The satellite pseudo-clock biases can therefore be also obtained via particular methods in which the notion of double differencing is involved.  相似文献   

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