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首页> 外文期刊>Journal of Geodesy >Calibrating receiver-type-dependent wide-lane uncalibrated phase delay biases for PPP integer ambiguity resolution
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Calibrating receiver-type-dependent wide-lane uncalibrated phase delay biases for PPP integer ambiguity resolution

机译:校准接收器类型相关的宽通道未校准相位延迟偏置PPP整数模糊分辨率

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摘要

Wide-lane (WL) uncalibrated phase delay (UPD) is usually derived from Melbourne-Wubbena (MW) linear combination and is a prerequisite in Global Navigation Satellite Systems (GNSS) precise point positioning (PPP) ambiguity resolution (AR). MW is a linear combination of pseudorange and phase, and the accuracy is limited by the larger pseudorange noise which is about one hundred times of the carrier phase noise. However, there exist inconsistent pseudorange biases which may have detrimental effect on the WL UPD estimation, and further degrade user-side ambiguity fixing. Currently, only the large part of pseudorange biases, e.g., the differential code bias (DCB), are available and corrected in PPP-AR, while the receiver-type-dependent biases have not yet been considered. Ignoring such kind of bias, which could be up to 20 cm, will cause the ambiguity fixing failure, or even worse, the incorrect ambiguity fixing. In this study, we demonstrate the receiver-type-dependent WL UPD biases and investigate their temporal and spatial stability, and further propose the method to precisely estimate these biases and apply the corrections to improve the user-side PPP-AR. Using a large data set of 1560 GNSS stations during a 30-day period, we demonstrate that the WL UPD deviations among different types of receivers can reach +/- 0.3 cycles. It is also shown that such kind of deviations can be calibrated with a precision of about 0.03 cycles for all Global Positioning System (GPS) satellites. On the user side, ignoring the receiver-dependent UPD deviation can cause significant positioning error up to 10 cm. By correcting the deviations, the positioning performance can be improved by up to 50%, and the fixing rate can also be improved by 10%. This study demonstrates that for the precise and reliable PPP-AR, the receiver-dependent UPD deviations cannot be ignored and have to be handled.
机译:宽车道(WL)未校准相位延迟(UPD)通常来自墨尔本 - 武器(MW)线性组合,并且是全球导航卫星系统(GNSS)精确点定位(PPP)模糊分辨率(AR)的先决条件。 MW是伪橙色和阶段的线性组合,并且精度受较大的伪距噪声限制,伪距噪声大约是载波相位噪声的一百倍。然而,存在对WL UPD估计可能具有不利影响的不一致伪静脉偏差,并且进一步降低了用户侧模糊的定影。目前,仅在PPP-AR中仅可用并校正差分码偏置(DCB)的大部分伪距偏差,而尚未考虑接收器类型相关的偏差。忽略这类偏差,可能高达20厘米,会导致模糊的定影故障,甚至更差,不正确的歧义固定。在这项研究中,我们展示了接收器类型相关的WL更新偏差并调查它们的时间和空间稳定性,并进一步提出了该方法,精确地估计这些偏差并应用校正以改善用户侧PPP-AR。在30天期间使用大型数据集1560个GNSS站,我们证明了不同类型接收器之间的WL UPD偏差可以达到+/- 0.3周期。还示出了这种种类的偏差可以用适用于所有全球定位系统(GPS)卫星的精度约为0.03个循环的精确度。在用户方面,忽略接收器相关的更新偏差可能导致高达10厘米的显着定位误差。通过校正偏差,定位性能可以提高至50%,并且固定速率也可以提高10%。本研究表明,对于精确和可靠的PPP-AR,无法忽略接收器相关的更新偏差并且必须处理。

著录项

  • 来源
    《Journal of Geodesy 》 |2021年第7期| 82.1-82.18| 共18页
  • 作者单位

    Tech Univ Berlin Str 17 Juni 135 D-10623 Berlin Germany|Deutsch GeoForschungsZentrum GFZ D-14473 Potsdam Germany;

    Deutsch GeoForschungsZentrum GFZ D-14473 Potsdam Germany;

    Tech Univ Berlin Str 17 Juni 135 D-10623 Berlin Germany|Deutsch GeoForschungsZentrum GFZ D-14473 Potsdam Germany;

    Tech Univ Berlin Str 17 Juni 135 D-10623 Berlin Germany|Deutsch GeoForschungsZentrum GFZ D-14473 Potsdam Germany;

    Tech Univ Berlin Str 17 Juni 135 D-10623 Berlin Germany|Deutsch GeoForschungsZentrum GFZ D-14473 Potsdam Germany;

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

    Uncalibrated phase delay; Precise point positioning; Ambiguity resolution; Receiver-type-dependent bias;

    机译:未校准的相位延迟;精确点定位;歧义分辨率;接收器类型依赖偏差;

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