全球导航卫星系统信号模拟器的载波频率相位校准方法

S. I. Donchenko, O. V. Denisenko, A. M. Kaverin, V. B. Pudlovsky, A. A. Frolov, A. S. Bondarenko
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引用次数: 0

摘要

全球导航卫星系统信号在多个天线之间的载波频率相位差测量被用于许多坐标和导航应用中。全球导航卫星系统信号模拟器用于控制全球导航卫星系统接收器的仪器误差。因此,有必要确定信号模拟器生成信号的载波频率相位的系统误差。为此,开发了一种新的全球导航卫星系统模拟器校准方法。该方法基于模拟器两个无线电频率通道生成相位差的细化误差模型。使用宽带示波器作为模数转换器实现了所提出的方法。校准方法的批准是通过与使用国家二级标准单位在 0...-60 dB 范围内的复传输系数和在 0.05-65 GHz 频率范围内的 0.002-1 复反射系数(登记号:2.1.ZZT.0210.2015)获得的测量结果进行比较而实现的。通过该校准方法,可为全球导航卫星系统模拟器确定导航信号的载波频率相位偏移,扩展不确定性(覆盖因子为 3)为 1°。所提出的方法可确保全球导航卫星系统信号载波频率相位差的生成精度满足现代全球导航卫星系统模拟器的要求。
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Carrier frequency phase calibration method for global navigation satellite systems signal simulators
Measurements of carrier frequency phase differences of global navigation satellite system signals between multiple antennas are used in many coordinate and navigation applications. Global navigation satellite systems signal simulators are used for controlling global navigation satellite systems receiver’s instrumental errors. Therefore, it is necessary to determine the systematic error of the carrier frequency phase of generated signals for signal simulators. For this purpose a new calibration method of global navigation satellite systems simulators was developed. Method is based on refined errors model of generated phase differences of two radio frequency channels of the simulator. The proposed method was implemented using a wideband oscilloscope as an analog-to-digital converter. Approbation of the calibration method was carried out by comparison with the measurement results obtained using the State secondary standard of units of complex transmission coefficients in the range of 0...–60 dB and complex reflection coefficients in the range of 0.002–1 in the frequency range of 0.05–65 GHz (registration No. 2.1.ZZT.0210.2015). The calibration method allows one to determine carrier frequencies phase offsets of navigation signals for global navigation satellite systems simulators with expanded uncertainty (with a coverage factor of 3) of 1°. The proposed method provides the required accuracy of generating phase differences of the carrier frequencies of global navigation satellite systems signals is ensured for modern types of global navigation satellite systems simulators.
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