...
首页> 外文期刊>Journal of navigation >Precise GPS Positioning with Low-Cost Single-Frequency System in Multipath Environment
【24h】

Precise GPS Positioning with Low-Cost Single-Frequency System in Multipath Environment

机译:多路径环境中低成本单频系统的精​​确GPS定位

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Low-cost, single-frequency GPS systems provide economical positioning solutions to many geomatics applications, including GIS and low-accuracy surveying applications. Unfortunately however, the positioning accuracy obtained with those systems is not sufficient for many surveying applications. This is mainly due to the presence of ionospheric delay and multipath. In this research ionospheric delay is accounted for using regional high-resolution ionospheric maps produced by the US National Oceanic and Atmospheric Administration (NOAA). The major remaining constraint and challenging problem is multipath. This is because multipath is environmentally-dependent, difficult to model mathematically and cannot be reduced through differential positioning. This research proposes a new approach to identify multipath-contaminated L1 measurements through wavelet analysis. First, the difference between the code and carrier-phase measurements is estimated, leaving essentially twice the ionospheric delay, multipath and system noise. The ionospheric delay is largely removed by using high-resolution ionospheric delay maps produced by NOAA. The remaining residuals contain mainly low-frequency multipath, if it exists, and high-frequency system noise, which are decomposed using Daubechies family wavelets (db8). A satellite signal is identified as contaminated by multipath based on the standard deviation of the low-frequency part of the residual component. The L1 measurements obtained from the satellites with the lowest multipath are used to compute the final positions using two software packages, namely Trimble Total Control (TTC) and Bernese scientific processing software. The Magellan AC12 low-cost single-frequency GPS receiver was extensively tested in static mode. It is shown that accuracies within 5 cm are routinely obtained for baselines up to 65 km under various multipath environments.
机译:低成本的单频GPS系统为许多地理信息应用(包括GIS和低精度测量应用)提供了经济的定位解决方案。然而不幸的是,用这些系统获得的定位精度不足以用于许多测量应用。这主要是由于电离层延迟和多径的存在。在这项研究中,电离层延迟是由美国国家海洋与大气管理局(NOAA)制作的区域高分辨率电离层图解释的。剩下的主要约束和挑战性问题是多路径。这是因为多径是环境相关的,难以进行数学建模,并且无法通过差分定位来减少。这项研究提出了一种通过小波分析识别多路径污染的L1测量值的新方法。首先,估算出代码和载波相位测量之间的差异,实际上留下了两倍的电离层延迟,多径和系统噪声。通过使用NOAA生成的高分辨率电离层延迟图可以大大消除电离层延迟。剩余的残差主要包含低频多径(如果存在)和高频系统噪声,这些噪声使用Daubechies族小波(db8)分解。根据残余分量低频部分的标准偏差,卫星信号被识别为被多径污染。使用两个软件包,即Trimble Total Control(TTC)和Bernese科学处理软件,将从具有最低多径路径的卫星获得的L1测量值用于计算最终位置。麦哲伦AC12低成本单频GPS接收机已在静态模式下进行了广泛的测试。结果表明,在各种多径环境下,对于长达65 km的基线,通常可以获得5 cm以内的精度。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号