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Statistics of solar microwave radio burst spectra with implications for operations of microwave radio systems

机译:太阳微波无线电突发频谱的统计信息,对微波无线电系统的运行有影响

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Analysis of 412 solar radio burst events in the microwave range [1.2–18] GHz that were measured at the New Jersey Institute of Technology Owens Valley Solar Array over 2 years (2001–2002) during the peak of the 23rd solar cycle is conducted in the context of the possible interference of such bursts with radio-receiving and radar systems that operate at these frequencies. It is found that there is a small probability for solar interference for systems operating at a frequency ν > 2.6 GHz and with a typical noise floor, but the probability increases significantly at lower frequencies. The probability is greater for more sensitive systems operating with higher gain, but the likelihood of interference can be partially ameliorated by an increase in the operating frequency. Finally, our statistics indicate that it could be beneficial for radio and radar systems operating below 2.6 GHz to employ an adaptable mode wherein, if the prediction of solar activity suggested the possible occurrence of a large radio burst, system operators could switch operations to a less susceptible frequency band above 2.6 GHz.
机译:在第23个太阳周期的峰值期间,由新泽西理工学院的欧文斯谷太阳能电池阵列在2年(2001-2002年)期间进行了测量,分析了[1.2-18] GHz微波范围内的412个太阳无线电爆发事件。这种突发可能干扰以这些频率运行的无线电接收和雷达系统的情况。已经发现,对于在ν> 2.6 GHz频率和典型本底噪声下运行的系统,太阳受到干扰的可能性很小,但是在较低频率下,该可能性会大大增加。对于以更高增益工作的更敏感的系统,该可能性更大,但可以通过提高工作频率来部分缓解干扰的可能性。最后,我们的统计数据表明,对于工作在2.6 GHz以下的无线电和雷达系统,采用一种自适应模式可能是有益的,如果太阳活动的预测表明可能发生较大的无线电突发,则系统运营商可以将运行模式切换到较小的模式。 2.6 GHz以上的敏感频段。

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