首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到19条相似文献,搜索用时 143 毫秒
1.
以武汉地区为例,本文推导无线电探空推导的大气加权平均温度模型并对其可靠性进行检验。采用武汉无线电探空数据推算武汉地区的大气加权平均温度计算模型,以此模型计算GPS可降水量,通过与无线电探空结果比较来检验该模型的精确度。在WHDH站GPS可降水量与无线电探空的比较中,两者差值的均方根为3.0mm,两者的相关性达到了0.952。利用中国地壳运动监测网络2002年武汉站GPS数据和武汉地区大气加权平均温度模型推算的可降水量与无线电探空比较,GPS可降水量与无线电探空可降水量在数值上和发展趋势上比较接近,说明了无线电探空的大气加权平均温度模型的可靠性。  相似文献   

2.
刘晓刚  张丽萍  陈军  赵润 《测绘科学》2011,36(4):24-26,91
本文简要介绍了星地无线电双向时间比对法的基本原理,给出其地心惯性系中计算模型,分析了各种误差源对星地间相对钟差的影响,计算了在几种计算精度下卫星和地面站位置和速度误差所需要达到的精度.结果表明:影响星地无线电双向法精度的主要误差源为设备时延误差和电离层延迟误差,而由于卫星和地面站位置不准确引起的误差相对较小;对于电离层...  相似文献   

3.
GPS气象的可靠性检核研究   总被引:1,自引:2,他引:1  
本文通过对GPS湿延迟和水汽辐射计、GPS可降水量与无线电探空资料的比较,进行了GPS气象可靠性检核研究。得出如下结论:GPS可降水量序列与无线电探空的相关性可达0.94;差值均值为-0.24mm;均方根4.0mm。文中对用精密星历及快速预报星历计算所得的GPS湿延迟和水汽辐射计数据进行了比较,在发展趋势上水汽辐射计观测数据与快速预报/精密星历解算出的对流层湿延迟相近,且经过精密星历与快速预报星历反演所得出的的对流层延迟与水汽辐射计数据的差值的均方根分别为1.51cm、1.52cm。  相似文献   

4.
湿延迟与可降水量转换系数的全球经验模型   总被引:1,自引:0,他引:1  
利用2005~2011年的全球大地测量观测系统(global geodetic observing system,GGOS)Atmosphere提供的2.5°×2°(经度×纬度)的天顶湿延迟(zenith wet delay,ZWD)格网数据和欧洲中尺度天气预报中心(European Centre for Medium-Range Weather Forecasts,ECMWF)提供的2.5°×2°可降水量(precipitable water vapor,PWV)格网数据,在全球范围内计算得到各格网点的地基GPS水汽反演关键参数Π-1的时间序列,分析了其时空分布特征,建立了一种转换系数Π的全球经验模型。该模型无需站点气象数据,仅与站点经纬度、年积日和海拔相关。利用未参与建模的2012年的GGOS Atmosphere和ECMWF格网数据、2012年661个无线电探空站的探空资料对模型进行精度检验。结果显示,采用格网数据检验,其偏差的平均值(Bias)为-0.179mm,均方根误差(root mean square error,RMS)的平均值为1.806mm;采用无线电探空资料进行检验,其Bias为0.465mm,RMS为0.789mm。结果都表现出了较小的系统性偏差与较高的精度,说明所建立的湿延迟与可降水量转换系数模型在全球范围内具有较高的精度与稳定性。  相似文献   

5.
分析了构建速度场的统计模型和函数模型法,提出利用两种模型逼近原始观测速度的综合逼近法,以减少剩余误差.计算和比较了各种方法,结果显示,综合法优于单独利用统计模型和函数模型法.  相似文献   

6.
2020年6月北斗卫星导航系统(BDS)完成全面组网,为分析其解算水汽信息的精度,选用15个MGEX (Multi-GNSS Experiment)测站2021年10月至11月的观测数据进行水汽反演. 利用GAMIT软件分别解算BDS、GPS、Galileo和GLONASS的观测数据,将得到的对流层天顶延迟(ZTD)与国际GNSS服务(IGS)发布的结果进行对比,并将解算的大气可降水量(PWV)分别与探空数据、ERA5数据计算得到的PWV对比. 实验结果表明:截止高度角设置为5°时,4个卫星系统估计的ZTD均方根 (RMS)均小于13 mm,GPS-PWV、BDS-PWV、Galileo-PWV、GLONASS-PWV与无线电探空可降水量(RS-PWV)相比,RMS平均值分别为2.25 mm、2.46 mm、2.52 mm和2.84 mm,RMS均小于3 mm;与ERA5-PWV相比,RMS平均值分别为1.63 mm、1.86 mm、1.76 mm和1.99 mm,RMS均小于2 mm. GPS探测水汽的精度最高,BDS探测水汽的精度低于GPS和Galileo,高于GLONASS,均满足气象学应用需求.   相似文献   

7.
作为区域连续运行参考系统(CORS)反演大气可降水量的关键参数——大气加权平均温度,时空特性明显。为了提高区域CORS反演大气可降水量的精度和可靠性,利用青岛探空站2009-2011年3年的探空数据,分析得到地表温度Ts与加权平均温度Tm的相关系数R为0.877 6,为强线性相关;采用回归分析建立了青岛地区加权平均温度模型;利用该模型计算青岛地区2012年加权平均温度,与由探空数据计算的加权平均温度的平均偏差、标准差和均方根误差分别为0.307 K、3.359 K和3.384 K;将该模型应用在青岛CORS反演大气可降水量的计算中,与临近探空站计算的大气可降水汽相比,平均偏差、标准差和均方根误差分别为0.70 mm、3.48 mm和3.53 mm.研究表明,应用区域探空数据建立加权平均温度模型具有可行性,并可以在一定程度上提高区域CORS反演大气可降水量的精度和可靠性。   相似文献   

8.
朱爽 《测绘工程》2014,(4):28-32
利用中国区域内93个无线电探空站2005-2010年的探空数据,分析加权平均温度的特征,并分析Bevis公式在中国的适用性。同时利用北京站2005-2010年的无线电探空数据进行北京地区加权平均温度模型的本地化研究,并利用模型进行北京地区2011年加权平均温度的计算,其结果与实际加权平均温度的差值平均值为2.16K,均方根误差为4.78,同时将利用模型生成的可降水汽量与利用探空数据获得的可降水汽量进行对比,差值平均值为-1.42K,均方根误差为2.87。实验证实北京地区本地化模型的精度较高,实用性较强。  相似文献   

9.
大气加权平均温度的准确获取对高精度的GPS水汽反演至关重要。文中基于线性回归理论,在分析加权平均温度与地面温度间相关性的基础上,采用一元线性拟合的方法,建立大气加权平均温度经验模型。最后,采用香港地区2006-2015年无线电探空资料对经验模型进行验证。实验结果表明,文中模型计算加权平均温度的整体均方根误差为2.356 K,较Bevis模型精度提高了41.94%,且季节变化对加权平均温度计算的影响并不明显;对于GPS水汽反演,采用本文经验模型反演水汽的均方根误差为1.807 mm,平均偏差为1.362 mm,能够满足GPS可降水量反演的精度,且优于Bevis模型。   相似文献   

10.
针对加权平均温度(Tm)模型对GPS水汽反演精度影响的问题,该文基于无线电探空资料,利用线性回归分析方法建立湖南地区Tm模型,以此模型反演GPS可降水量。通过与无线电探空资料对比,分析Tm本地化对GPS水汽反演精度的影响。对2016年4月至12月临近长沙、怀化和郴州的GPS可降水量进行反演,结果表明:较Bevis Tm模型,采用本地化的Tm模型反演得到的GPS可降水量精度更高,和无线电探空测得可降水量对比,平均偏差分别降低了25.68%、36.87%和13.70%,均方根误差分别降低了1.40%、1.93%和1.36%。  相似文献   

11.
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   

12.
The estimates of total zenith delay are derived using Bernese GPS Software V4. 2 based on GPS data every 30 s from the first measurement experiment of a ground-based GPS network in Chengdu Plain of Southwest China during the period from July to September 2004. Then the estimates of 0.5 hourly precipitable water vapor (PWV) derived from global positioning system (GPS) are obtained using meteorological data from automatic weather stations (AWS). The comparison of PWV derived from GPS and those from radiosonde observations is given for the Chengdu station, with RMS (root mean square) differences of 3.09m. The consistency of precipitable water vapor derived from GPS to those from radiosonde is good. It is concluded that Bevis’ empirical formula for estimating the weighted atmospheric mean temperature can be applicable in Chengdu area because the relationship of GPS PWV with Bevis’ formula and GPS PWV with radiosonde method shows a high correlation. The result of this GPS measurement experiment is helpful both for accumulating the study of precipitable water vapor derived from GPS in Chengdu areas located at the eastern side of the Tibetan Plateau and for studying spatial-temporal variations of regional atmospheric water vapor through many disciplines cooperatively.  相似文献   

13.
The estimates of total zenith delay are derived using Bernese GPS Software V4. 2 based on GPS data every 30 s from the first measurement experiment of a ground-based GPS network in Chengdu Plain of Southwest China during the period from July to September 2004. Then the estimates of 0.5 hourly precipitable water vapor (PWV) derived from global positioning system (GPS) are obtained using meteorological data from automatic weather stations (AWS). The comparison of PWV derived from GPS and those from radiosonde observations is given for the Chengdu station, with RMS (root mean square) differences of 3.09m. The consis- tency of precipitable water vapor derived from GPS to those from radiosonde is good. It is concluded that Bevis’ empirical formula for estimating the weighted atmospheric mean temperature can be applicable in Chengdu area because the relationship of GPS PWV with Bevis’ formula and GPS PWV with radiosonde method shows a high correlation. The result of this GPS measurement experiment is helpful both for accumu- lating the study of precipitable water vapor derived from GPS in Chengdu areas located at the eastern side of the Tibetan Plateau and for studying spatial-temporal variations of regional atmospheric water vapor through many disciplines cooperatively.  相似文献   

14.
The revitalized Russian GLONASS system provides new potential for real-time retrieval of zenith tropospheric delays (ZTD) and precipitable water vapor (PWV) in order to support time-critical meteorological applications such as nowcasting or severe weather event monitoring. In this study, we develop a method of real-time ZTD/PWV retrieval based on GLONASS and/or GPS observations. The performance of ZTD and PWV derived from GLONASS data using real-time precise point positioning (PPP) technique is carefully investigated and evaluated. The potential of combining GLONASS and GPS data for ZTD/PWV retrieving is assessed as well. The GLONASS and GPS observations of about half a year for 80 globally distributed stations from the IGS (International GNSS Service) network are processed. The results show that the real-time GLONASS ZTD series agree quite well with the GPS ZTD series in general: the RMS of ZTD differences is about 8 mm (about 1.2 mm in PWV). Furthermore, for an inter-technique validation, the real-time ZTD estimated from GLONASS-only, GPS-only, and the GPS/GLONASS combined solutions are compared with those derived from very long baseline interferometry (VLBI) at colocated GNSS/VLBI stations. The comparison shows that GLONASS can contribute to real-time meteorological applications, with almost the same accuracy as GPS. More accurate and reliable water vapor values, about 1.5–2.3 mm in PWV, can be achieved when GLONASS observations are combined with the GPS ones in the real-time PPP data processing. The comparison with radiosonde data further confirms the performance of GLONASS-derived real-time PWV and the benefit of adding GLONASS to stand-alone GPS processing.  相似文献   

15.
气象参数(温度T、气压P)是GPS大气可降水汽(PWV)反演中必不可少的数据,也是PWV反演的重要误差源之一。文中主要对GPT/2(GPT、GPT2)模型用于PWV反演的精度进行验证和分析。基于非差精密单点定位(PPP)技术,选取SuomiNet网9个测站的观测数据,借助研制的PPP软件,分别采用GPT模型、改进的GPT2模型以及测站实测气象数据进行大气可降水汽(PWV)反演。以实测气象数据处理结果为参考,对两种模型解算的PWV进行了对比和精度分析。结果表明:改进的GPT2模型优于GPT模型,尤其是当测站的高程较大时,GPT2模型的稳定性更优、适用性更广;采用GPT2模型解算的PWV偏差均值小于±1.0mm,精度(RMS)优于±1.5mm。在缺少实测气象数据的情况下,利用GPT2模型数据仍然能够取得较为理想的PWV反演结果。  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.
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   

18.
地基GPS技术遥感香港地区大气水汽含量   总被引:3,自引:0,他引:3  
提出了分段多项式方法计算大气水汽含量,并结合无线电高空气象探测资料,分析并评估了地基GPS遥感技术的精度。香港地区的可降水份计算结果表明,地基GPS遥感技术的精度为1 m m ~2 m m  相似文献   

19.
在考虑可降水量季节性变化的基础上,提出利用GPS数据建立MODIS近红外可降水量季节性模型。首先对比分析2014年北京房山(BJFS)站的GPS可降水量和相应时间的MODIS近红外可降水量数据,发现两者之间的变化趋势基本一致,存在显著线性相关性;然后以GPS可降水量为标准值,利用回归分析建立GPS和MODIS可降水量之间的季节和全年校正模型。经检验,GPS可降水量与四个季节模型校正的MODIS近红外可降水量的均方根误差均小于3mm,最大误差不超过6mm,季节校正模型的精度都要高于全年校正模型。  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号