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LightSquared effects on estimated C/N0, pseudoranges and positions

机译:对估计的C / N0,伪距和位置的光平方效应

摘要

We present experimental results showing the impact of the proposed LightSquared (LS) Long-term Evolution (LTE) signals on both GPS and Galileo civil modulations in the L1/E1 band. The experiments were conducted in radiated mode in a large anechoic chamber.Three Galileo enabled receivers were chosen for the tests, and a state of the art GNSS signal generator was used to simulate both GPS and Galileo signals. The LTE signals were generated by an Agilent Programmable Signal Generator with a license to generate the signals according to the 3GPP LTE FDD standard. The interference impact was measured in terms of a Carrier-to-Noise power spectral density ratio (C/N0) degradation, in accordance with the methodology which the LS/GPS Technical Working Group (TWG) established by mandate of the FCC. A model for determining the impact of the LS signal on the considered GNSS signals is provided and is validated against experimental data. It is shown that the Galileo E1 Open Service (OS) signal is marginally more susceptible to this form of interference than the GPS L1 C/A signal due to its greater proximity to the lower edge of the L1 band. The impact of LS interference was further analyzed in terms of pseudorange and position errors. Despite its relevance for most GNSS users, this aspect was not considered by the TWG.
机译:我们提供的实验结果表明,建议的LightSquared(LS)长期演进(LTE)信号对L1 / E1频段的GPS和Galileo民用调制均具有影响。实验是在大消声室中以辐射模式进行的,选择了三个启用Galileo的接收器进行测试,并且使用了最先进的GNSS信号发生器来模拟GPS和Galileo信号。 LTE信号是由安捷伦可编程信号发生器产生的,具有许可证,可以根据3GPP LTE FDD标准生成信号。根据LS / GPS技术工作组(TWG)根据FCC的授权建立的方法,以载波噪声功率谱密度比(C / N0)降级的方式来测量干扰影响。提供了一种用于确定LS信号对所考虑的GNSS信号的影响的模型,并针对实验数据进行了验证。结果表明,伽利略E1开放服务(OS)信号比GPS L1 C / A信号更容易受到这种形式的干扰,因为它更接近L1频段的下沿。根据伪距和位置误差进一步分析了LS干扰的影响。尽管它与大多数GNSS用户相关,但TWG并未考虑这一方面。

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