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1.
介绍了一种采用输出校正方式DGPS/INS组合导航系统引导无人机下滑着陆的方案。给出了该方案的数学模型,对组合导航系统进行了数字仿真,并在数字仿真的基础上进行了动态跑车试验,验证了所设计的输出校正方式DGPS/INS组合导航系统能够满足引导无人机自动下滑着陆的精度要求。  相似文献   

2.
GPS数据事后处理方法研究   总被引:1,自引:0,他引:1       下载免费PDF全文
介绍了准载波相位事后差分GPS和相对GPS两种GPS数据事后处理方法,利用GPS数据事后处理方法能显著提高GPS定位精度,且现场测试过程中无须基准站精确坐标,没有大量数据的实时传输和解算。  相似文献   

3.
The broadcast performance of DGPS (differential global positioning systems)/radio beacons is studied. It is found that a combination of receiver limiting and forward error corrections is very effective against the atmospheric noise which characterizes the MF band. This combination significantly reduces the probability of bit error and the average time between differential updates. The authors compute the probability of link outage versus range, and find that forward error correction significantly increases DGPS/radio beacon coverage. It is found that groundwave/skywave interference slightly increases the probability of outage at moderate ranges. An estimate is made of the expected duration of outage for the DGPS/radio beacon signal. All results are based on analytical and experimental results  相似文献   

4.
郑在齐 《飞行力学》1996,14(4):84-88
GPS是美国正在大力发展的高精度卫星导航系统。主要叙述差分GPS在飞行试验中的应用,首先介绍GPS的伪距测量定位原理和测速原理,DGPS提高定位精度的原理。  相似文献   

5.
非视距环境是造成超宽带定位系统精度下降的主要原因。由于非视距环境的测距精度下降难以通过常规计算方法建立改正模型,提出了一种基于反向传播算法的神经网络改正的超宽带稳健定位模型。该方法通过反向传播神经网络的自适应学习方法建立了一种超宽带非视距误差改正的稳健定位模型,实现了在非视距环境下超宽带定位精度的提升。首先采集非视距环境下超宽带测距值,提取超宽带在非视距环境下的坐标序列,计算得到误差序列,然后通过反向传播神经网络建立误差改正模型预测得到标签的误差改正值,最后使用超宽带Kalman滤波定位模型进行超宽带定位,从而消除非视距环境对定位精度的影响。通过对比实验分析,本模型较多项式拟合模型超宽带测距精度提高46.8%,定位精度提高43.4%;较多面函数拟合模型超宽带测距精度提高28.2%,定位精度提高26.2%。实验结果表明,反向传播算法的神经网络对超宽带非视距定位模型的误差改正有很好的效果,对超宽带定位精度的改正效果显著。  相似文献   

6.
针对集群编队条件下对高精度时间同步的需求,对通导一体高精度时间同步方法进行了研究,将卫星导航系统与数据链系统进行深度融合,提出了动基座条件下基于卫星导航载波差分算法的节点间高精度时间同步算法。该算法通过协同时间驯服的方式来抑制两次定位间隔间受钟漂影响导致的节点间时间同步误差发散以及节点间时钟修正不同步导致的时间同步误差,提升了编队组网条件下节点间的时间同步精度。最后,通过仿真对算法进行了验证。结果表明,时空同步精度可以达到1ns,可有力支撑未来集群编队作战、高精度协同探测、高精度协同制导等典型场景下对节点间高精度时间同步的需求。  相似文献   

7.
Marine radiobeacon networks are being used to broadcast differential Global Positioning System (DGPS) corrections to marine users. The correction data digitally modulate signals from some of the existing marine radiobeacons, which operate in the 285 to 325 kHz band, creating DGPS/radiobeacons. The corrections improve the accuracy of the GPS fix from 100 m to 5-10 m, and provide position fixing service for many marine applications which are too demanding for the normal GPS service. Forward error correction can be used to improve the reliability or range of the DGPS/radiobeacon signal. The improvements made possible by channel coding are analyzed, and a code for DGPS/radiobeacons is recommended  相似文献   

8.
惯导与速率计构成的组合系统是机动作战车辆较常使用的自主定位定向系统,其惯导姿态精度将直接影响组合定位精度。文章利用车辆运动途中的地标信息,讨论了车载惯导姿态误差估计与修正技术,通过仿真分析了地标位置与车辆零速信息在惯导姿态修正过程中的作用。结果表明:利用地标信息是进行车载惯导姿态修正较为实用的途径,在此基础上可以有效提高车载惯导/速率计组合定位系统的精度。  相似文献   

9.
A clamped-mode resonant converter (CMRC) is proposed to be used as a transmitter which broadcasts correction signals in a differential Global Positioning System (DGPS). The digital information of the DGPS modulates the carrier with different modulation methods minimum shift keying (MSK) (recommended for the marine radiobeacon band), stepped binary phase shift keying (S-BPSK) and BPSK. The first two methods allow keeping the converter's operation in soft switching mode. Extensive trials under impedance mismatch and modulation conditions confirm that the soft switching mode is preserved.  相似文献   

10.
 鉴于遗传算法(GA)所具有的全局搜索特性,也为了更快速准确地解算差分全球定位系统(DGPS)整周模糊度,将自适应遗传算法(AGA)引入DGPS整周模糊度的搜索中。首先根据全球定位系统(GPS)载波相位双差方程求解出双差整周模糊度的浮点解,并以基线长度作为约束条件确定整周模糊度的搜索范围;然后利用白化滤波的方法对整周模糊度进行降相关处理,降低整周模糊度各分量之间的相关性;最后将自适应遗传算法应用在整周模糊度的解算过程中,搜索整周模糊度的最优解。仿真计算结果表明,与LAMBDA算法和简单遗传算法相比,自适应遗传算法能够快速地求解整周模糊度,也具有较好的可靠性和鲁棒性。  相似文献   

11.
针对RTK精密定位系统存在的稳定性差、可靠性低、系统兼容能力低等问题,提出了高稳定高可靠多平台兼容RTK精密定位系统设计方法。该系统基于冗余式方法设计GNSS定位单元,以提高系统兼容性;基于工作距离设计冗余式修正信息交互方式,并设计了基于ARM+DSP架构的AM5728实时解算RTK修正信息,通过复合型高速通信链路共享信息。以精密标定点为参考测试其定位精度并采用CEP评估其定位精准性,评估结果表明,CEP=0.0071m,说明定位精度高且可靠性好,解决了稳定性差、可靠性低、系统兼容能力低的问题,有效弥补了RTK精密定位系统领域受限的不足。  相似文献   

12.
针对RTK精密定位系统存在的稳定性差、可靠性低、系统兼容能力低等问题,提出了高稳定高可靠多平台兼容RTK精密定位系统设计方法。该系统基于冗余式方法设计GNSS定位单元,以提高系统兼容性;基于工作距离设计冗余式修正信息交互方式,并设计了基于ARM+DSP架构的AM5728实时解算RTK修正信息,通过复合型高速通信链路共享信息。以精密标定点为参考测试其定位精度并采用CEP评估其定位精准性,评估结果表明,CEP=0.0071m,说明定位精度高且可靠性好,解决了稳定性差、可靠性低、系统兼容能力低的问题,有效弥补了RTK精密定位系统领域受限的不足。  相似文献   

13.
In-flight phase center systematic errors of global positioning system(GPS) receiver antenna are the main restriction for improving the precision of precise orbit determination using dual-frequency GPS.Residual approach is one of the valid methods for in-flight calibration of GPS receiver antenna phase center variations(PCVs) from ground calibration.In this paper,followed by the correction model of spaceborne GPS receiver antenna phase center,ionosphere-free PCVs can be directly estimated by ionosphere-free carrier phase post-fit residuals of reduced dynamic orbit determination.By the data processing of gravity recovery and climate experiment(GRACE) satellites,the following conclusions are drawn.Firstly,the distributions of ionosphere-free carrier phase post-fit residuals from different periods have the similar systematic characteristics.Secondly,simulations show that the influence of phase residual estimations for ionosphere-free PCVs on orbit determination can reach the centimeter level.Finally,it is shown by in-flight data processing that phase residual estimations of current period could not only be used for the calibration for GPS receiver antenna phase center of foretime and current period,but also be used for the forecast of ionosphere-free PCVs in future period,and the accuracy of orbit determination can be well improved.  相似文献   

14.
This paper addresses differential global positioning system (DGPS)/inertial measurement unit (IMU) integration-based geolocation system developed for airborne remote sensing cameras. First, we provide a brief review on sensor calibration, alignment and sensor fusion as background material of this research. After presenting those background material, as a main part of this paper we present a geolocation algorithm designed for an airborne imaging system. The geolocation system developed is tested through actual airborne experiments. For the verification of the geolocation system developed, we compare initial stationary states of the airplane before-taking off with states after-landing. From the actual test results, we find that it is critical to do an accurate time synchronization between IMU, DGPS, and airborne images, and to compensate for the data delay occurred during the network transfer.  相似文献   

15.
Accurate three-dimensional (3D) target positioning is of great importance in many industrial applications. Although various methods for reconstructing 3D information from a set of images have been available in the literature, few of them pay enough attention to the indispensable procedures, such as target extraction from images and image correction having strong influences upon the 3D positioning accuracy. This article puts forward a high-precision ellipse center (target point) extraction method and a new image correction approach which has been integrated into the 3D reconstruction pipeline with a concise implicit model to accurately compensates for the image distortion. The methods are applied to a copyright-reserved close range photogrammetric system. Real measuring experiments and industrial applications have evidenced the proposed methods, which can significantly improve the 3D positioning accuracy.  相似文献   

16.
用于SAR运动补偿的DGPS/SINS组合系统研究   总被引:11,自引:1,他引:11  
曹福祥  保铮  袁建平  郑谔 《航空学报》2001,22(2):121-124
使用考虑位置误差相关项的伪距率观测模型 ,研究了用于合成孔径雷达运动补偿的差分 GPS/ SINS伪距率组合系统。结果表明 ,组合系统的长期位置精度能达到 1 m左右。 GPS数据更新率低于 INS,在 GPS测量时间间隔内 ,组合系统的性能仅由 INS决定。虽然 INS误差随时间积累 ,在 GPS数据更新率为 1 s的情况下 ,即使采用中等精度的惯性仪表 ,其相对位置精度为厘米级 (这里相对位置精度指组合系统在 GPS测量时间间隔内位置误差的变化范围)。  相似文献   

17.
北斗三号全球卫星导航系统已正式建成并开通服务。为了利用实时改正数信息系统地揭示北斗三号精密单点定位性能,并为用户提供理论依据和应用参考,首先解算了卫星实时精密轨道、钟差及其改正数,分析了其精度。然后基于实时改正数信息,利用监测站广播星历和观测数据,分别进行了双频静态、双频仿动态、单频静态和单频仿动态仿实时精密单点定位,以评估其性能。结果表明:北斗三号MEO卫星实时轨道和钟差精度均值分别约为12cm和0.2ns,满足实时精密单点定位需求。静态实时精密单点定位精度优于动态,双频优于单频,均可达到分米级。对于定位收敛时间,双频静态最短,约为40min;双频动态和单频静态均约为85min;单频动态最长,约为120min。  相似文献   

18.
Previous research at the Air Force Institute of Technology (AFIT) has resulted in the design of a differential Global Positioning System (DGPS) aided INS-based (inertial navigation system) precision landing system (PLS) capable of meeting the FAA precision requirements for instrument landings. The susceptibility of DGPS transmissions to both intentional and nonintentional interference/jamming and spoofing must be addressed before DGPS may be safely used as a major component of such a critical navigational device. This research applies multiple model adaptive estimation (MMAE) techniques to the problem of detecting and identifying interference/jamming and spoofing in the DGPS signal. Such an MMAE is composed of a bank of parallel filters, each hypothesizing a different failure status, along with an evaluation of the current probability of each hypothesis being correct, to form a probability-weighted average state estimate as an output. For interference/jamming degradation represented as increased measurement noise variance, simulation results show that, because of the good failure detection and isolation (FDI) performance using MMAE, the blended navigation performance is essentially that of a single extended Kalman filter (EKF) artificially informed of the actual interference noise variance. However, a standard MMAE is completely unable to detect spoofing failures (modeled as a bias or ramp offset signal directly added to the measurement). This work describes a moving-bank pseudoresidual MMAE (PRMMAE) to detect and identify such spoofing. Using the PRMMAE algorithm, spoofing is very effectively detected and isolated; the resulting navigation performance is equivalent to that of an EKF operating in an environment without spoofing  相似文献   

19.
在基于微惯性器件的行人导航系统中,陀螺仪和加速度计的偏移是降低系统定位精度的重要因素。传统的标定方法大多在实验室中进行,后续导航解算都是基于标定后的固定模型,然而MEMS器件长时间工作后,标定模型参数发生变化会导致系统导航性能下降。通过分析行人导航系统及MEMS器件的特点,提出了一种基于误差模型的MEMS器件参数在线修正方法。根据行人行走的特点,检测并区分行走过程中的可修正区间与不修正区间。在可修正区间基于逆向解算算法实现了对陀螺仪和加速度计零偏的在线修正,并提出了主航向反馈修正算法,提高了行人导航系统长时间导航性能。实验结果表明,40m行走实验中,系统定位精度提升了9.07%;300m行走实验中,系统定位精度提升了13.14%。  相似文献   

20.
全球卫星定位系统(GNSS)需要至少4颗卫星才能提供持续、准确的定位结果。在有障碍物遮挡的城市街道、山谷或者存在压制式干扰的战场环境中,往往会出现可见星数量降低至4颗以下的情况。针对只有2颗可见星的定位问题,提出了通过相对位置变化对绝对位置进行解算的定位模型,证明了该模型的可行性,并研究了该模型的数值计算方法和几何搜索方法。仿真实验和实际跑车试验表明,在只有2颗可见星条件下,该方法的定位精度明显优于传统的INS/GNSS紧组合算法,并且对初始位置的精度不具有依赖性。  相似文献   

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