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Interference from global navigation satellites in future HI intensity mapping surveys

机译:全球导航卫星在未来HI强度图调查中的干扰

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Upcoming HI intensity mapping (IM) surveys will need to achieve unprecedented levels of sensitivity in order to measure the weak integrated emission of extra-galactic HI. Such sensitive surveys will need to overcome many systematic contaminations within the data. One such contaminant originates from the Global Navigation Satellite System (GNSS). Emissions from radio-navigation satellites within the GNSS broadcast across a wide-range of cosmological interesting frequencies (1164 to 1610 MHz), with an in band brightness that is comparable to the Sun. These proceedings use simulations of observations from the upcoming BINGO experiment to explore the effect of GNSS emissions on HI IM data. These simulations are not overly concerned with bright, stochastic events corresponding to a satellite transiting the BINGO main beam response, which can be removed via post-processing of the data. The principle concern is the low-level interactions of the satellites within the side lobes of the BINGO beam and out-of-band transmissions due to the frequency side lobes of the transmitter. The results of these proceedings find that the HI IM signal will be almost three orders-of-magnitude weaker than integrated emission of radio-navigation satellites interacting within the BINGO side lobes. For out-of-band interference, the simulations reveal that the emission from satellites could be comparable to HI signal almost 100 MHz away from the GNSS transmission bands. The implication of these results is that there will be increased challenges for all future HI IM observations of the dark-energy dominated epoch, which includes the proposed BINGO, FAST and SKA1-MID surveys.
机译:即将进行的HI强度测绘(IM)调查将需要达到前所未有的灵敏度水平,以便测量银河外HI的弱综合发射。这种敏感的调查将需要克服数据中的许多系统污染。其中一种污染物来自全球导航卫星系统(GNSS)。 GNSS内的无线电导航卫星发出的辐射,在广泛的宇宙学有趣的频率(1164至1610 MHz)中广播,其带内亮度可与太阳媲美。这些程序使用来自即将进行的BINGO实验的观察结果的模拟来探索GNSS排放对HI IM数据的影响。这些模拟并不太关注与通过BINGO主波束响应的卫星对应的明亮,随机事件,可以通过对数据进行后处理来消除这些事件。原则上的关注是由于发射机的频率旁瓣,BINGO波束旁瓣内的卫星与带外传输之间存在低水平的相互作用。这些程序的结果发现,HI IM信号将比在BINGO旁瓣内相互作用的无线电导航卫星的综合发射弱近三个数量级。对于带外干扰,仿真显示,卫星的发射可以与距GNSS传输频带近100 MHz的HI信号相媲美。这些结果的含义是,未来所有关于暗能量占主导的时代的HI IM观测都将面临更大的挑战,其中包括拟议的BINGO,FAST和SKA1-MID调查。

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