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Intense L-Band Solar Radio Bursts Detection Based on GNSS Carrier-To-Noise Ratio Decrease over Multi-Satellite and Multi-Station

机译:激烈的L波段太阳能无线电突发基于GNSS载波噪声比在多卫星和多站的载波 - 噪声比下降

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摘要

Intense solar radio bursts (SRBs) can increase the energy noise and positioning error of the bandwidth of global navigation satellite system (GNSS). The study of the interference from intense L-band SRBs is of great importance to the steady operation of GNSS receivers. Based on the fact that intense L-band SRBs lead to a decrease in the carrier-to-noise ratio (C/N0) of multiple GNSS satellites over a large area of the sunlit hemisphere, an intense L-band SRB detection method without the aid of a radio telescope is proposed. Firstly, the valley period of a single satellite at a single monitoring station is detected. Then, the detection of SRBs is achieved by calculating the intersection of multiple satellites and multiple stations. The experimental results indicate that the detection rates of GPS L2 and GLONASS G2 are better than those of GPS L1 L5, GLONASS G1, and Galileo E1 E5. The detection rate of SRBs can reach 80% with a flux density above 800 solar flux unit (SFU) at the L2 frequency of GPS. Overall, the detection rate is not affected by the satellite distribution relative to the Sun. The proposed detection method is low-cost and has a high detection rate and low false alarm rate. This method is a noteworthy reference for coping with interference in GNSS from intense L-band SRBs.
机译:强烈的太阳能无线电突发(SRB)可以提高全球导航卫星系统(GNSS)的带宽的能量噪声和定位误差。对来自强度L波段SRB的干扰的研究非常重视GNSS接收器的稳定运行。基于激烈的L波段SRB导致多个GNSS卫星的载波 - 噪声比(C / N0)的大面积在阳光照射半球的大面积上,强烈的L波段SRB检测方法没有提出了无线电望远镜的帮助。首先,检测单个监控站的单个卫星的谷周期。然后,通过计算多个卫星和多个站的交叉来实现SRB的检测。实验结果表明,GPS L2和GLONASS G2的检测速率优于GPS L1 L5,GLONASS G1和GALILEO E1 E5。 SRB的检测率可以达到80%,在GPS的L2频率下800太阳能磁通单元(SFU)以上的通量密度。总体而言,检测率不受卫星分布相对于太阳的影响。所提出的检测方法是低成本并且具有高检测率和低误报率。该方法是一种值得注意的参考,用于应对来自激烈的L波段SRB的GNSS干扰。

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