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1.
介绍了GPS无线电掩星技术探测大气的原理,分析了GPS无线电掩星技术在监测全球气候变化和提高数值天气预报精度等方面的潜在贡献,最后对其应用前景进行了展望。  相似文献   

2.
准确掌握地球大气中的水气分布,了解水气变化趋势对天气现象、全球气候变化、数值预报具有理论研究及实用价值。以无线电掩星技术为基础,利用掩星数据反演大气参数剖面。对原反演模型的不足进行了论证,并给出了反演个例。详细地论述了通过引入MM5先验温度T再通过线性迭代的方法反演对流层下部水汽廓线原理,给出了优化后模型反演个例。并对模型优化后反演廓线中存在的问题进行了分析,提出了下一步优化方向。  相似文献   

3.
山基GPS掩星技术因具有较强的实用功能成为目前反演大气研究的热点。结合雾灵山山基GPS掩星试验数据,研究了山基反演大气折射率的主要组成部分,并详细介绍了几个模块的实现过程,最后用程序解算了一段掩星数据。  相似文献   

4.
与传统的无线电探空、雷达探测等手段相比,GNSS掩星技术为大气探测提供了一个强有力的工具,其具有无校准、全天候、精度高、垂直分辨率高、全球均匀覆盖等特点。介绍了利用GNSS掩星技术获取地球大气温、压、湿等相关参数大小的研究现状。同时,提出了GNSS掩星技术在气候研究领域的发展方向,将拓宽GNSS掩星技术在全球气候变化研究中的应用。  相似文献   

5.
近年来伴随导航定位技术与无线电掩星技术的结合,一种崭新的遥感地球大气的方法-Global Positioning System/Meteoroloby(GPS/NET)应运而生,该方法可以有效地探测大气温、压、湿等气象参数。本文在介绍利用GPS-LEO掩星技术探测地球大气的原理,以及反演大气参数的方法、步骤的基础上,给出了模拟掩星数据反演出的温度廓线、密度廓线及部分GPS/NET实验数据的初步反演结果。通过分析可以看出,利用掩星技术反演出的温度廓线与大气实际情况相符,并且与ECMWF、NCEP的结果吻合较好。在干空气假设条件下,近地面大气的反演结果与实际情况还存在一定误差,有待深入研究解决。  相似文献   

6.
与传统的无线电探空、雷达探测等手段相比,GNSS掩星技术为大气探测提供了一个强有力的工具,其具有无校准、全天候、精度高、垂直分辨率高、全球均匀覆盖等特点.介绍了利用GNSS掩星技术获取地球大气温、压、湿等相关参数大小的研究现状.同时,提出了GNSS掩星技术在气候研究领域的发展方向,将拓宽GNSS掩星技术在全球气候变化研究中的应用.  相似文献   

7.
以全球无线电探空数据和美国环境预报中心(National Centers for Environmental Prediction,NCEP)预报模式为参照,对COSMIC数据分析与管理中心(COSMIC Data Analysis and Archive Center,CDAAC)提供的2007-06-01-2007-06-30的气象、电离层与气候星座观测系统(the constellation observing system for me-teorology,lonosphere,and climate,COSMIC)的GPS掩星折射指数廓线进行了统计验证.结果表明,掩星廓线的精度在高纬度地区最好,在低纬度地区最差.中、低纬度带掩星廓线相对于探空廓线有系统性相对偏差,该偏差在掩星廓线与NCEP预报廓线的比较中不存在,说明探空数据的质量是造成这种偏差的主要原因,这可能与不同地区所采用的无线电探空仪的性能有关.  相似文献   

8.
利用COSMIC提供的GPS无线电掩星观测数据,从掩星弯曲角廓线出发确定对流层顶高度,并分别与对应的掩星温度廓线确定的温度最低点对流层顶(cold point tropopause,CPT)和温度递减率对流层顶(lapse rate tropopause,LRT)、无线电探空(距离掩星事件300km以内、观测时间差异3h以内)温度廓线确定的CPT和LRT进行了对比。  相似文献   

9.
雾灵山山基掩星观测反演误差分析   总被引:1,自引:0,他引:1  
运用山基GPS掩星探测技术对2005年8月河北雾灵山山基GPS掩星观测试验数据进行了处理,获得了接收机高度以下的大气折射率廓线;分析了掩星反演结果的内部符合情况,并利用同时进行的联合探空观测数据,将探空结果与掩星反演结果进行了比对分析.分析结果表明,山基GPS掩星反演大气折射率的内部符合精度优于1%,与常规探空结果的平均偏差为5.9%.反演结果偏小,标准偏差为5.6%.  相似文献   

10.
欧洲ACE+掩星观测计划   总被引:3,自引:0,他引:3  
最近,欧洲制定了一个新的ACE^ 掩星观测计划。它由4颗小卫星组成,分布在2个轨道面上。星载接收机可以分别接收GPS和Galileo(伽利略)导航星座信号,进行掩星观测。此外,4颗小卫星中的两颗卫星,携带X和K波段的发射机,另外两颗携带接收机,他们之间也进行掩星观测,测量电波振幅变化,独立反演对流层大气温度和水汽。计划创新之处在于,它以前所未有的技术和测量精度获得全球大量的电离层和中性大气的气象场资料。本文介绍ACE^ 计划观测内容、卫星载荷、地面观测设备的数据处理技术,也给出该计划的应用前景。  相似文献   

11.
The GPS radio occultation technique is a rather simple and inexpensive tool for getting information about the global characteristics of the vertical electron density distribution. No other ionospheric sounding technique (bottomside/topside vertical sounding, incoherent scatter) unifies vertical profiling through the entire ionosphere with global coverage. The paper addresses retrieval methods and algorithms applied for the generation of operational products including their limitations in accuracy and spatial resolution. Preliminary results of ionospheric radio occultation (IRO) measurements carried out onboard the German CHAMP satellite are reported. The achieved accuracy of the retrieved electron density profiles (EDPs) is estimated in particular by comparing the IRO results with independent vertical sounding data from European stations. It is concluded that CHAMP-IRO measurements have the potential to establish global data sets of EDPs, contribute to ionospheric research, develop and improve global ionospheric models and to provide operational space weather information.  相似文献   

12.
成都地区地基GPS观测网遥感大气可降水量的初步试验   总被引:7,自引:0,他引:7  
利用首个成都地区地基GPS观测网2004年7~9月30s间隔的测量数据,通过Bernese GPS SoftwareV4.2解算出30min间隔的天顶总延迟量,结合自动气象站获得的气象资料计算出30min间隔的GPS遥感的大气可降水量。与根据气象探空站探测资料算出的可降水量进行统计对比,确定出本次GPS遥感可降水量试验的精度为3.09mm,两种可降水量时间序列呈现高度的一致性。同时验证了计算对流层加权平均温度的Bevis经验公式在成都地区的适用性。  相似文献   

13.
This research is motivated by the recent IGS Ionosphere Working Group recommendation issued at the IGS 2010 Workshop held in Newcastle, UK. This recommendation encourages studies on the evaluation of the application of COSMIC radio occultation profiles for additional IGS global ionosphere map (GIM) validation. This is because the reliability of GIMs is crucial to many geodetic applications. On the other hand, radio occultation using GPS signals has been proven to be a promising technique to retrieve accurate profiles of the ionospheric electron density with high vertical resolution on a global scale. However, systematic validation work is still needed before using this powerful technique for sounding the ionosphere on a routine basis. In this paper, we analyze the properties of the ionospheric electron density profiling retrieved from COSMIC radio occultation measurements. A comparison of radio occultation data with ground-based measurements indicates that COSMIC profiles are usually in good agreement with ionosonde profiles, both in the F2 layer peak electron density and the bottom side of the profiles. For this comparison, ionograms recorded by European ionospheric stations (DIAS network) in 2008 were used.  相似文献   

14.
(Near-)real-time orbit determination for GNSS radio occultation processing   总被引:2,自引:1,他引:1  
The processing of GPS radio occultation measurements for use in numerical weather predictions requires a precise orbit determination (POD) of the host satellite in near-real-time. Making use of data from the GRAS instrument on Metop-A, the performance of different GPS ephemeris products and processing concepts for near-real-time and real-time POD is compared. While previous analyses have focused on the achievable along-track velocity accuracy, this study contributes a systematic comparison of the resulting estimated bending angles. This enables a more rigorous trade-off of different orbit determination methodologies in relation to the end-user needs for atmospheric science products. It is demonstrated that near-real-time GPS orbit and clock products have reached a sufficient quality to determine the Metop-A along-track velocity with an accuracy of better than 0.05 mm/s that was formerly only accessible in post-processing. The resulting bending angles are shown to exhibit standard deviation and bias differences of less than 0.3 % compared with post-processed products up to altitudes of at least 40 km, which is notably better than 1 % accuracy typically assumed for numerical weather predictions in this height regime. Complementary to the analysis of ground-based processing schemes, the potential of autonomous on-board orbit determination is investigated for the first time. Using actual GRAS flight data, it is shown that a 0.5 m 3D rms position accuracy and a 0.2 mm/s along-track velocity accuracy can in fact be obtained in real-time with the currently available GPS broadcast ephemeris quality. Bending angles derived from the simulated real-time processing exhibit a minor performance degradation above tangent point heights of 40 km but negligible differences with respect to ground-based products below this altitude. Onboard orbit determination and, if desired, bending angle computation, can thus enable a further simplification of the ground segment in future radio occultation missions and contribute to reduced product latencies for radio occultation data assimilation in numerical weather predictions.  相似文献   

15.
The Global Positioning System (GPS) radio occultation measurements obtained using the TurboRogue GPS receiver on the Danish satellite Ørsted have been processed using the single frequency method. Atmospheric profiles of refractivity and temperature are derived and validated against numerical weather prediction data from the European Centre for Medium-Range Weather Forecast (ECMWF). Results from the Ørsted GPS measurement campaign in February 2000 indicate that the single frequency method can provide retrievals with accuracy comparable to that of using two frequencies. From comparisons between measured dry temperature profiles and corresponding dry temperature profiles derived from ECMWF analysis fields, we find a mean difference of less than 0.5 K and a standard deviation of 2–4 K between 500 and 30 hPa in height. Above 30 hPa the impact of the ionosphere becomes more dominant and more difficult to eliminate using the single frequency method, and the results show degraded accuracy when compared to previous analysis results of occultation data from other missions using the dual frequency method. At latitudes less than 40° (denoted low latitudes), the standard deviation is generally smaller than at latitudes higher than 40° (denoted high latitudes). A small temperature bias is observed centered at 200 hPa for low latitudes and at 300 hPa for high latitudes. This indicates that the ECMWF analyses do not adequately resolve the tropopause temperature minimum. In the lowest part of the troposphere an observed warm bias is thought to be due to erroneous tracking of the GPS signal in cases of atmospheric multipath propagation.  相似文献   

16.
Spatial and temporal resolution of water vapor content is useful in improving the accuracy of short-term weather prediction. Dense and continuously tracking regional GPS arrays will play an important role in remote sensing atmospheric water vapor content. In this study, a piecewise linear solution method was proposed to estimate the precipitable water vapor (PWV) content from ground-based GPS observations in Hong Kong. To evaluate the solution accuracy of the water vapor content sensed by GPS, the upper air sounding data (radiosonde) that are collected locally was used to calculate the precipitable water vapor during the same period. One-month results of PWV from both ground-based GPS sensing technique and radiosonde method are in agreement within 1–2 mm. This encouraging result will motivate the GPS meteorology application based on the establishment of a dense GPS array in Hong Kong.  相似文献   

17.
空基GPS遥感地球大气参数方法研究   总被引:6,自引:0,他引:6  
蒋虎 《测绘学报》2001,30(3):238-241
探讨了空基无线电掩星技术应用于遥感地球大气参数方法,并将该方法编制成资料处理软件。对实测资料进行处理和分析后,给出了地球大气参数反演结果。发现指数函数外推法引入数据处理后大大改进了大气温度的归算结果,而对气压归算的影响却很小。比对结果显示我们的遥感结果同国外有关结果基本相符。  相似文献   

18.
Remote sensing of water vapor content using ground-based GPS data   总被引:1,自引:0,他引:1  
Spatial and temporal resolution of water vapor content is useful in improving the accuracy of short-term weather prediction.Dense and continuously tracking regional GPS arrays will play an important role in remote sensing atmospheric water vapor content.In this study,a piecewise linear solution method was proposed to estimate the precipitable water vapor (PWV) content from ground-based GPS observations in Hong Kong.To evaluate the solution accuracy of the water vapor content sensed by GPS,the upper air sounding data (radiosonde) that are collected locally was used to calculate the precipitable water vapor during the same period.One-month results of PWV from both ground-based GPS sensing technique and radiosonde method are in agreement within 1~2 mm.This encouraging result will motivate the GPS meteorology application based on the establishment of a dense GPS array in Hong Kong.  相似文献   

19.
胡鹏  黄观文  张勤  燕兴元  李哲 《测绘学报》2020,49(5):557-568
利用GNSS三维水汽层析技术全天候地获取高时空采样率的水汽垂直分布信息,已成为GNSS气象学中一大研究热点。当前,基于单一导航系统的传统层析方法存在观测数据利用率低、观测分布不均等不足。本文设计和实现了一种顾及边界入射信号的多模水汽层析方法,采用香港CORS网观测数据和无线电探空产品进行精度验证,并详细分析边界入射信号和多模层顶信号的引入对层析水汽结果的改善程度。结果表明:相较于传统GPS层析方法,本文采用的融合两类多模层顶信号和边界入射信号的新水汽层析方法,兼备边界入射信号和多模层顶信号的优点,可得到更高精度和更可靠的三维水汽信息。  相似文献   

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