2022 年 10 月 25 日巴格达大学日偏食期间天空无线电频率干扰背景水平行为研究

Zina Fadel Kahdim, Kamal M. Abood
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摘要

射频干扰(RFI)描述的是射电望远镜观测中人为射电信号噪声对射电天文传输造成的削弱,它表示天空中任何时候的射频噪声水平,与任何天文来源无关。这种噪声受到各种来源的影响,包括地球大气层或太阳活动以及在射电望远镜附近运行的所有通信设备。在本研究中,使用 HSA2000 系列接收器频谱分析仪测量了包括射频干扰在内的背景噪声,该接收器连接了两个不同频段的偶极子天线(15-80 MHz)低频段天线和(110-240 MHz)高频段天线,在 2022 年 10 月 25 日巴格达日偏食期间(12:00-15:00),作为一个简单的射电望远镜来观测天空中的射电天文背景水平。很明显,日偏食期间的平均射频干扰电平(LBA 为 -83.249 dBm)比平日的值(-77.495 dBm)降低了约 (0.93)。而高分辨率辐射的 -84.711 dBm 则比平日的值 (-72.784 dBm) 降低了约 (0.85)。此外,我们还注意到,这些数值与夜间的射频干扰电平(LBA 为 -82.352 dBm,HBA 为 -82.739 dBm)大致相等。LBA 和 HBA 分别为 (0.98) 和 (0.97)。这项研究证实,尽管日偏食持续时间较短,但日偏食期间的平均值与夜间的平均值相近,原因是电离层电子密度(尤其是低频电子密度)降低,以及监测区域周围人类活动造成的地面干扰 FRI。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Study of Sky Radio Frequency Interference Background Level Behavior During the Partial Solar Eclips on 25 Oct. 2022 at The Baghdad University Location
Radiofrequency interference (RFI) describes the weakening of radio astronomy transmissions caused by man-made radio signal noise in radio telescope observation indicates the level of radio frequency noise in the sky at all times, regardless of any astronomical sources. This noise is affected by various sources, including Earth's atmosphere or solar activity and all communications equipment operating near the radio telescope. In this study, the background noise which includes RFI was measured using HSA2000 series receiver spectrum analyzer, which connected with two dipole antennas in different frequency bands (15-80 MHz) low band antenna, and (110-240 MHz) high band antenna during the partial solar eclipse in Baghdad on October 25, 2022, at (12:00-15:00), as a simple radio telescope to observe the radio astronomical background level in the sky. It is clear that the average amount of RFI level during a partial solar eclipse (-83.249 dBm for LBA decreased by about (0.93) from the value on a normal day (-77.495 dBm). And For HBA -84.711 dBm decreased by about (0.85) from the value on a normal day (-72.784 dBm). Also, it was noticed that these amounts are approximately equal to the RFI level at night (-82.352 dBm for LBA and -82.739 dBm for HBA). It is (0.98) for LBA and (0.97) for HBA, respectively. This research confirms that despite the short duration of the partial eclipse, the average value during the partial eclipse period is close to the average values during the night period due to the decrease in the electronic density of the ionosphere, especially at low frequencies, and the FRI of ground disturbances as a result of the activities of human from the surrounding the monitoring area.  also, found that at the monitoring point, there is a good relationship between the time of the maximum partial eclipse and the peaks of signal gain strength.
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