首页> 美国卫生研究院文献>Sensors (Basel Switzerland) >Development and Positioning Accuracy Assessment of Single-Frequency Precise Point Positioning Algorithms by Combining GPS Code-Pseudorange Measurements with Real-Time SSR Corrections
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Development and Positioning Accuracy Assessment of Single-Frequency Precise Point Positioning Algorithms by Combining GPS Code-Pseudorange Measurements with Real-Time SSR Corrections

机译:通过将GPS码伪距测量值与实时SSR校正相结合对单频精确点定位算法进行开发和定位精度评估

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摘要

We have developed a suite of real-time precise point positioning programs to process GPS pseudorange observables, and validated their performance through static and kinematic positioning tests. To correct inaccurate broadcast orbits and clocks, and account for signal delays occurring from the ionosphere and troposphere, we applied State Space Representation (SSR) error corrections provided by the Seoul Broadcasting System (SBS) in South Korea. Site displacements due to solid earth tide loading are also considered for the purpose of improving the positioning accuracy, particularly in the height direction. When the developed algorithm was tested under static positioning, Kalman-filtered solutions produced a root-mean-square error (RMSE) of 0.32 and 0.40 m in the horizontal and vertical directions, respectively. For the moving platform, the RMSE was found to be 0.53 and 0.69 m in the horizontal and vertical directions.
机译:我们开发了一套实时精确点定位程序,以处理GPS伪距可观测物,并通过静态和运动学定位测试验证了它们的性能。为了纠正不准确的广播轨道和时钟,并考虑电离层和对流层发生的信号延迟,我们应用了韩国首尔广播系统(SBS)提供的状态空间表示(SSR)纠错功能。为了提高定位精度,尤其是在高度方向上的定位精度,还考虑了由于固体潮汐载荷而引起的场地位移。当在静态定位下测试开发的算法时,经过卡尔曼滤波的解决方案在水平和垂直方向分别产生0.32和0.40 m的均方根误差(RMSE)。对于移动平台,RMSE在水平和垂直方向上分别为0.53和0.69 m。

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