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首页> 外文期刊>Survey Review >C/A CODE MULTIPATH MITIGATION AT GPS BASE STATIONS FOR IMPROVED DGPS CORRECTIONS USING WAVELETS
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C/A CODE MULTIPATH MITIGATION AT GPS BASE STATIONS FOR IMPROVED DGPS CORRECTIONS USING WAVELETS

机译:利用小波改善DGPS校正的GPS基站的C / A代码多路径缓解

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摘要

Differential GPS (DCPS) correction technique is one of the most popular and accurate techniques to enhance GPS positioning accuracies by minimizing most of the common mode errors as a collective process. Several DGPS processing techniques can be used, for instance, single differencing and double differencing which are very common in practice. Irrespective of the DGPS processing techniques used, the ultimate accuracy of the user location depends on the existence oj non-common mode (site-dependent) errors, which occur at the points of observation and the reference. Of these errors, the most common site-dependent error is the multipath. Several researchers have proposed different strategies and approaches to minimize the multipath effect on the final GPS position estimates. This manauscript evaluates the potential of applying wavelets transform to C/A code multipath mitigation at GPS reference stations, for improved differential GPS corrections.rnAn experiment was conducted making C/A code DGPS observations at three precisely known ground control stations assuming that two of them were permanent reference stations and the third as a user station. Four segments of about 24-hour continuous static observations were made by introducing four different multipath environments at one of the reference stations, each segment using a different type of artificial signal reflector. By making use of the known GPS receiver-reflector configuration, pseudo-range multipath was precisely calculated for each observation segment. In a subsequent analysis, different wavelet families and decomposition levels were applied to extract multipath from the pseudo-range residuals. By comparison, the best wavelet and level of decomposition were identified. The accuracy of this process is highly dependent on selecting the best suiting wavelet family and level of decomposition. The C/A code DGPS positioning accuracies prior to and after multipath correction are also presented.
机译:差分GPS(DCPS)校正技术是通过将大多数共模误差减至最小来增强GPS定位精度的最流行,最准确的技术之一。可以使用几种DGPS处理技术,例如在实践中非常普遍的单差分和双差分。与使用的DGPS处理技术无关,用户位置的最终准确性取决于在观察点和参考点上是否存在非共模(与位置有关)错误。在这些错误中,最常见的与站点有关的错误是多路径。一些研究人员提出了不同的策略和方法,以最大程度地减小对最终GPS位置估计的多径影响。该手稿评估了将小波变换应用于GPS参考站的C / A码多径缓解的潜力,以改进差分GPS校正.rn进行了一项实验,假设在三个精确的地面控制站上进行了C / A码DGPS观测,假设其中两个是永久参考站,第三个是用户站。通过在一个参考站引入四个不同的多径环境,进行了大约24小时连续静态观测的四个部分,每个部分都使用了不同类型的人工信号反射器。通过使用已知的GPS接收器-反射器配置,可以为每个观察段精确计算伪距多径。在随后的分析中,将不同的小波族和分解级别应用于从伪距残差中提取多径。通过比较,可以确定最佳的小波和分解级别。此过程的准确性在很大程度上取决于选择最适合的小波族和分解级别。还介绍了多径校正前后的C / A码DGPS定位精度。

著录项

  • 来源
    《Survey Review》 |2010年第317期|P.240-255|共16页
  • 作者单位

    School of Engineering and Technology, Asian Institute of Technology, Thailand;

    Department of Survey Engineering, Faculty of Engineering Chulalongkorn University, Thailand;

    School of Engineering and Technology, Asian Institute of Technology, Thailand;

    Department of Civil & Geomatics Engineering, California State University, Fresno,California, U.S.A.;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    multipath; wavelet analysis; C/A code DGPS; OPS permanent reference station;

    机译:多径小波分析C / A码DGPS;OPS永久参考站;

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