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首页> 外文期刊>Geomagnetism and aeronomy >Influence of GPS/GLONASS differential code biases on the determination accuracy of the absolute total electron content in the ionosphere
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Influence of GPS/GLONASS differential code biases on the determination accuracy of the absolute total electron content in the ionosphere

机译:GPS / GLONASS差分代码偏差对电离层中绝对总电子含量的确定精度的影响

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Systematic error arises when the total electron content (TEC) is estimated with the simultaneous use of phase and code GPS/GLONASS measurements. This is related to the different signal propagation times at L1 and L2 frequencies in the radio frequency path of the transmitting and receiving equipment, the so-called differential code biases. A differential code bias of 1 ns results in an error of similar to 2.9 TECU when TEC is determined. Differential code bias variations on a long time interval, which were obtained at the CODE laboratory, were analyzed. It has been found that the systematic variation in these biases and considerable seasonal variations apparently caused by the environmental state (temperature and humidity), which sometimes reach 20 TECU (in TEC units), are observed for several stations. The algorithm for determining differential code biases at an individual station and the results of correction for absolute slant TEC are also presented. Presented results show algorithm effectiveness for various geographical regions and solar activity.
机译:当同时使用相位和代码GPS / GLONASS测量值估算总电子含量(TEC)时,会出现系统误差。这与发送和接收设备的射频路径中L1和L2频率处的信号传播时间不同有关,即所谓的差分码偏置。确定TEC时,1 ns的差分代码偏置会导致类似于2.9 TECU的误差。分析了在CODE实验室获得的长时间间隔的差分代码偏差。已经发现,在几个站点观察到这些偏差的系统变化和明显由环境状态(温度和湿度)引起的明显季节性变化,有时达到20 TECU(以TEC单位)。还介绍了确定单个站的差分代码偏差的算法以及绝对倾斜TEC的校正结果。提出的结果表明算法对于各种地理区域和太阳活动的有效性。

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