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1.
北斗卫星导航系统的信号体制与GPS近似且占用相同的频段,不可避免地带来兼容性问题。从理论上分析兼容性评估的重要参数:频谱分离系数、码跟踪谱灵敏度和等效载噪比衰减,阐述伪随机码码长、导航数据速率和码片速率对兼容性计算的影响,在综合考虑信号兼容评估的运算速度和准确性的基础上,提出改进的GNSS兼容性评估模型。以此兼容性评估模型对北斗卫星导航系统和GPS所有频段进行仿真,仿真分析中考虑北斗卫星导航系统和GPS的具体频率分配、信号体制、发射功率、发射带宽、卫星天线增益、仰角、多普勒偏移、信号在空间传播的衰耗以及接收机参数。通过仿真可以看出,当北斗卫星导航系统满星座运行时,GPS对北斗系统的干扰将大于北斗系统对GPS的干扰。  相似文献   

2.
全球导航卫星系统间的频率兼容性研究已经成为一个热点问题.首先介绍了国际电联建议的卫星导航系统间干扰分析方法;然后根据该方法对Compass系统和GPS系统在L1频段的信号进行了干扰仿真分析,并比较了系统间互干扰和系统自干扰的影响.仿真计算结果表明,除了互用信号L1C和B1C外,其余信号间的自干扰在总干扰中占主导,互干扰的影响相对较小.  相似文献   

3.
全球导航卫星系统间的频率兼容性研究已经成为一个热点问题。首先介绍了国际电联建议的卫星导航系统间干扰分析方法;然后根据该方法对Compass系统和GPS系统在L1频段的信号进行了干扰仿真分析,并比较了系统间互干扰和系统自干扰的影响。仿真计算结果表明,除了互用信号L1C和B1C外,其余信号间的自干扰在总干扰中占主导,互干扰的影响相对较小。  相似文献   

4.
分析了BOC调制频谱分离对GNSS信号互干扰大小的影响。将基于载波跟踪谱分离系数和基于伪码跟踪谱分离系数等效载噪比下降的计算方法,用于分析频谱分离对功率增强条件下GPS军用信号自干扰强度、GPS军用信号对民用信号干扰强度的影响。结果表明,频谱分离对功率增强条件下军用信号自干扰大小的影响较小,但会较大幅度降低军用信号对民用信号的干扰,从而从根本上解决功率增强条件下军用信号对民用信号的干扰问题。  相似文献   

5.
产品信息     
三星跟踪系统芯片接收机台湾拓普康(Topcon)定位系统公司新近推出一款名为Paradigm G3 GPS芯片接收机,这种接收机可对GPS、GLONASS和Galileo卫星进行全球信号跟踪,它可接收GPS L1,L2和L5载波频率、C/A码和L2C民用码以及L1和L2频率的P码,它还可以接收GLONASS的L1及L2载波频率、L  相似文献   

6.
利用了GESS跟踪网的数据,分析了GIOVE-A/B卫星的L1和E5频段不同信号的质量,并与GPS C/A码作了相应比较。  相似文献   

7.
为了满足高动态用户及强干扰条件下的应用需求,提出了一种基于卫星信号矢量跟踪的SINS/GPS深组合导航方法,设计了基于FPGA硬件平台的实施方案。利用组合卡尔曼滤波器反馈回路取代了传统接收机中独立、并行的跟踪环路,能够同时完成所有可视卫星信号的跟踪和导航信息处理;通过矢量跟踪算法对所有可视卫星信号进行集中处理,能够增强跟踪通道对信号载噪比变化的适应能力,从而提高接收机在强干扰或信号中断条件下的跟踪性能;根据SINS导航参数和星历信息推测GPS伪码相位和多普勒频移等参数,用以辅助卫星信号的捕获和跟踪,能够大大缩短接收机的搜索捕获时间,并增强接收机在高动态条件下的跟踪性能。基于矢量跟踪的深组合方法不仅在GPS信号短暂中断期间,能够保证系统的导航精度和可靠性,而且在强干扰环境中能够维持较好的伪码相位和载波频率跟踪性能。  相似文献   

8.
台湾拓普康(Topcon)定位系统公司新近推出一款名为Paradigm G3 GPS芯片接收机,这种接收机可对GPS、GLONASS和Galileo卫星进行全球信号跟踪,它可接收GPS L1,L2和L5载波频率、C/A码和L2C民用码以及L1和L2频率的P码,它还可以接收GLONASS的L1及L2载波频率、L1及L2C/A码和P码,以及Galileo系统的L1、E1、E2、E5和E6信号。这种芯片接收机具有72个跟踪通道,以低功耗工作。它可用于测绘、建筑测量、商用测绘、民用工程测量、精准农业机械控制、陆基建筑物、摄影测绘和水文测量等工作。  相似文献   

9.
全球定位系统(global positioning system,GPS)卫星的IIR和IIF卫星能够在各个信号分量之间重新分配其发送信号的功率,一个或多个GPS信号可以在指定区域根据需要进行功率调整或者关闭。分析GPS信号的变化特征对于地面和空间应用有重要的意义。风云三号D(FengYun-3D,FY-3D)卫星是中国极轨气象卫星之一,利用FY-3D卫星实际测量数据可以帮助GPS用户全面了解GPS功率调整的特点。首先,利用FY-3D运行轨道全球覆盖的特点分析GPS信号的强度,特别是GPS信号功率调整时间段信号变化的特点;然后,使用在轨数据研究了全球范围L波段信号干扰的特征,得到了干扰对全球导航卫星系统掩星探测仪掩星天线的自动增益控制和基底噪声的影响。结果表明:从2020-02-14开始的GPS功率调整以[35°N,37°E]和[35°N,69°E]为中心,覆盖半径约为7 500 km,在该区域内GPS P(Y)码功率增加约10 dB;GPS L1和L2频段在中东地区持续受干扰的影响,该区域的基底噪声比其他区域增加约3~10倍;干扰区域中心点和GPS功率调整区域中心点大致在同一位置。G...  相似文献   

10.
针对北斗卫星导航系统/惯性导航系统(BDS/INS)的深组合定位系统,提出了一种利用惯性导航系统(INS)辅助B1C正交分量的信号跟踪算法,以解决定位过程中信号较弱致深组合定位系统失锁的问题. 该算法使用了考虑INS数据的卡尔曼滤波算法,并同时利用导频分量和数据分量构成本地码,对信号进行跟踪. 由该算法对实测数据计算,并利用传统算法进行对比,可以得出在弱信号的环境下跟踪环路较为稳定,伪距精度较高.   相似文献   

11.
Compared with the traditional GPS L1 C/A BPSK-R(1) signal, wideband global navigation satellite system (GNSS) signals suffer more severe distortion due to ionospheric dispersion. Ionospheric dispersion inevitably introduces additional errors in pseudorange and carrier phase observations that cannot be readily eliminated by traditional methods. Researchers have reported power losses, waveform ripples, correlation peak asymmetries, and carrier phase shifts caused by ionospheric dispersion. We analyze the code tracking bias induced by ionospheric dispersion and propose an efficient all-pass filter to compensate the corresponding nonlinear group delay over the signal bandwidth. The filter is constructed in a cascaded biquad form based on the estimated total electron content (TEC). The effects of TEC accuracy, filter order, and fraction parameter on the filter fitting error are explored. Taking the AltBOC(15,10) signal as an example, we compare the time domain signal waveforms, correlation peaks, code tracking biases, and carrier phase biases with and without this all-pass filter and demonstrate that the proposed delay-equalization all-pass filter is a potential solution to ionospheric dispersion compensation and mitigation of observation biases for wideband GNSS signals.  相似文献   

12.
The mitigation of radio frequency interference (RFI) has a fundamental role in global navigation satellite system (GNSS) applications, especially when a high level of availability is required. Several electromagnetic sources, in fact, might degrade the performance of the global positioning system (GPS) and Galileo receivers, and their effects can be either in-band (i.e., secondary harmonics generated by transmitters of other communication systems due to non-linearity distortions) or out-of-band (i.e., strong signals that occupy frequency bandwidths very close to GNSS bands). We investigated the effects of real out-of-band signals on GNSS receivers and analyzed the impact on the overall receiver chain in order to evaluate the impact of the interference source. In particular, the analysis focuses on the spectrum at the front-end output, on the automatic gain control (AGC) behavior, as well as on the digital processing stages (signal acquisition and tracking) at the analog digital converter (ADC) output. This study refers to several experiments and data collections performed in interfered areas of downtown Torino (Italy). The obtained results underline how digital/analog TV transmissions represent a potential interference source for GNSS applications and might be critical for the safety of life services.  相似文献   

13.
考虑到全球导航卫星系统(global navigation satellite system,GNSS)地震信号的非线性和非平稳性,利用一种多尺度多方向主成分分析(multiscale multiway principal component analysis,MSMPCA)去噪的完备总体经验模态分解(complete...  相似文献   

14.
在地面车载组合导航GNSS/OD/SINS中,全球导航卫星系统(GNSS)信号容易受到环境的干扰甚至发生中断,将非完整性约束(NHC)应用于里程计(OD)/捷联惯性导航系统(SINS)组合,可以有效抑制GNSS信号中断期间组合导航系统的误差发散。通常NHC的噪声设定基于固定的经验值,然而在实际运动过程中,车辆运行轨迹复杂多变,其运动状态不能完全满足NHC前提假设,经验给定的噪声无法准确反映车辆实际运动情况。为此,本文分析了NHC噪声与车辆运动状态的关系,构建了一种基于车辆运动状态的NHC噪声自适应方法。通过所选场景的实测数据验证表明:采用噪声自适应的NHC/OD/SINS组合导航结果相比于固定噪声的NHC/OD/SINS组合,在GNSS信号中断110 s、车辆连续转弯的情况下,最大水平位置误差减小了68.4%;在GNSS信号中断74 s、车辆直线行驶的情况下,最大水平位置误差减小了87.3%;能较好地抑制GNSS中断期间组合导航系统的误差发散。  相似文献   

15.
GNSS(global navigation satellite systems)系统时使用原子钟作为时间基准,相比使用晶振的GNSS接收机,其稳定度高出几个量级。GNSS系统间钟差相比接收机钟差具有更高的稳定度,如果可以充分利用此先验信息将有助于优化多GNSS系统的定位结果。分析如何充分利用系统间钟差更稳定这一先验信息,并测试引入这一先验信息对多系统单点定位结果的影响,推导了基于两种不同钟差估计方法的定位解算模型,给出了最小二乘和扩展卡尔曼滤波两种参数估计算法。通过比较不同模型和估计算法在静态和动态定位的实验结果,最小二乘法无法利用系统间钟差更稳定的特点改善定位精度;静态实验结果表明,扩展卡尔曼滤波自身有一定的降噪效果,若引入系统间钟差更稳定的先验信息,将更有利于减小噪声;动态实验结果表明,引入系统间钟差更稳定的先验信息可减弱扩展卡尔曼滤波的发散现象。  相似文献   

16.
The analysis of tracking loops for global navigation satellite systems (GNSS) receivers is often confined to Monte Carlo approaches that can result in long simulation times and a limited number of simulation runs. A different approach based on Semi-Analytic principles is considered here. Matlab® code implementing a Semi-Analytic framework for the fast simulation of GNSS digital tracking loops is presented. The code structure is detailed and two specific examples implementing a standard PLL and the Double Estimator for unambiguous binary offset carrier (BOC) tracking are provided. The code has been organized in a modular way, and can be easily modified for the simulation of different tracking loops.  相似文献   

17.
导航信号经过电子密度不均匀的电离层时,信号的幅度和相位会产生快速随机起伏,即为电离层闪烁。电离层闪烁对接收机信号捕获跟踪以及解调定位都有一定的影响,本文采用理论和仿真的方法分析了电离层闪烁对I,Q支路以及跟踪环路的影响。结果表明:相位闪烁对信号I,Q支路均有影响,幅度闪烁对I支路的影响比较大,在相位闪烁比较强或者幅度闪烁比较强的区域,信号更难跟踪处理。弱闪烁时锁相环(PLL)的跟踪门限约29 dBHz,延迟锁定环路(DLL)的跟踪门限约为20.2 dBHz,强闪烁时PLL跟踪门限约为32 dBHz,DLL的跟踪门限约为22 dBHz。相比而言,载波跟踪环路更加脆弱。同时得到,闪烁越强,载波发生周跳的概率越大,载噪比越高,抗闪烁能力越强。   相似文献   

18.
通过分析A1tBOC(15,10)信号的功率谱密度、自相关函数,得出该信号在码跟踪性能上的理论优势,并根据Betz码跟踪评估理论仿真分析了接收机前端带宽、相关器间隔、环路鉴别器类型、载噪比以及全频带和单边带两种接收方式对该信号码跟踪精度的影响,并且通过与BPSK(10)、BOC(15,10)和单边带AltBoc(15,10)信号对比,得出AltBOC(15,10)信号在码跟踪精度上的优势,为AltBOC接收机设计提供理论依据。  相似文献   

19.
With the advent of new global navigation satellite systems (GNSSs) and new signals, GNSS users will rely more on them to obtain higher-accuracy positioning. Evil waveform monitoring and assessment are of great importance for GNSS to achieve its positioning, velocity, and timing service with high accuracy. However, the advent of new navigation signals introduces the necessity to extend the traditional analyzing techniques already accepted for binary phase-shift keying modulation to new techniques. First, the well-known second-order step thread model adopted by the International Civil Aviation Organization is introduced. Then the extended new general thread models are developed for the new binary offset carrier modulated signals. However, no research has been done on navigation signal waveform symmetry yet. Simulation results showed that, waveform asymmetry may also cause tracking errors, range biases, and position errors in GNSS receivers. It is thus imperative that the asymmetry be quantified to enable the design of appropriate error budgets and mitigation strategies for various application fields. A novel evil waveform analysis method, called waveform rising and falling edge symmetry (WRaFES) method, is proposed. Based on this WRaFES method, the correlation metrics are provided to detect asymmetric correlation peaks distorted by received signal asymmetry. Then the statistical properties of the proposed methods are analyzed, and a proper deformation detection threshold is calculated. Finally, both simulation results and experimentally measured results of Beidou navigation satellite system (BDS) M1-S B1Cd signal are given, which show the effectiveness and robustness of the proposed thread models.  相似文献   

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