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Powerful solar radio bursts as a global and free tool for testing satellite broadband radio systems, including GPS-GLONASS-GALILEO

机译:强大的太阳能广播成为测试卫星宽带无线电系统(包括GPS-GLONASS-GALILEO)的全球性免费工具

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摘要

We investigated failures in the global positioning system (GPS) performance produced by solar radio bursts with unprecedented radio flux density during the X6.5 and X3.4 solar flares on 6 and 13 December 2006, respectively. The effect of these events on GPS was compared to that of the X17.2 solar flare of 28 October 2003. Significant experimental evidence was found that high-precision GPS positioning on the Earth's entire sunlit side was partially disrupted for more than 10-15min on 6 and 13 December 2006. The high level of phase slips and count omissions resulted from the wideband solar radio noise emission. Our results provide serious grounds for revising the role of space weather factors in the functioning of modern satellite systems and for considering these factors more carefully in practice. Similar failures in the operation of satellite navigation systems (GPS, GLONASS, and GALILEO) can be fatal for operating safety systems as a whole and lead to great financial losses. Another important conclusion of our investigation concerns the continuous calibrated monitoring of the level of the solar radio emission flux. This monitoring involved a large number of solar radio spectrographs and allowed us to estimate the solar radio noise level in the range of the GPS-GLONASS-GALILEO frequencies. (C) 2008 Elsevier Ltd. All rights reserved.
机译:我们分别在2006年12月6日和13日的X6.5和X3.4太阳耀斑中调查了由具有空前的无线电通量密度的太阳无线电脉冲产生的全球定位系统(GPS)性能故障。将这些事件对GPS的影响与2003年10月28日的X17.2太阳耀斑进行了比较。重要的实验证据表明,高精度的GPS定位在地球整个阳光照射的一侧在10到15分钟内会受到部分干扰。 2006年12月6日至13日。相移和计数遗漏的高水平是由于宽带太阳能无线电噪声的发射所致。我们的结果为修改空间天气因素在现代卫星系统功能中的作用以及在实践中更仔细地考虑这些因素提供了重要依据。卫星导航系统(GPS,GLONASS和GALILEO)运行中的类似故障可能对整个运行安全系统都是致命的,并导致巨大的财务损失。我们调查的另一个重要结论涉及对太阳无线电发射通量水平的连续校准监视。这种监视涉及大量的太阳射电光谱仪,使我们能够估计GPS-GLONASS-GALILEO频率范围内的太阳射电噪声水平。 (C)2008 Elsevier Ltd.保留所有权利。

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