CREATION AND APPROBATION OF A LOW-FREQUENCY RADIO ASTRONOMY ANTENNA FOR STUDIES OF OBJECTS OF THE UNIVERSE FROM THE MOON'S FARSIDE

Q4 Physics and Astronomy Radio Physics and Radio Astronomy Pub Date : 2021-09-14 DOI:10.15407/rpra26.03.197
I. Bubnov, O. O. Konovalenko, P. Tokarsky, O. M. Korolev, S. Yerin, L. O. Stanislavsky
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引用次数: 2

Abstract

Purpose: Theoretical and experimental studies of the active antenna – an element of the low-frequency radio telescope antenna array for the future observatory on the farside of the Moon. Design/methodology/approach: To study the active antenna, consisting of a complex-shaped dipole and a low-noise amplifier, we used its mathematical model in the form of a two-port network, whose electrical parameters are set by the scattering matrix, the noise parameters being set by the covariance matrix of the spectral densities of noise waves. This model allows ma[1]king the correct analysis of the signal-to-noise ratio at the active antenna output with account for the external and internal noise sources. The modelling results were compared with those of experimental measurements of antenna characteristics. A series of radio astronomy observations were made with the developed antenna under the Earth environmental conditions. Findings: A numerical analysis of the radio telescope active antenna parameters has been made in a wide frequency range of 4–40 MHz. Two versions of the low-noise amplifier were developed to operate in the active antenna under the space and Earth environmental conditions. Under the Earth conditions, it has been experimentally proven that the range of problems, which such radio telescopes can effectively solve at low frequencies, is quite wide – from the solar research to the search for cosmological effects. Conclusions: The results of numerical simulations and experimental measurements obtained in this work have shown a satisfactory agreement between them for the most of the frequency range. The results of this work can be useful in the research and development of active antennas designed for operation at the decameter and hectometer wavelength ranges, particularly those intended for using under the space environmental conditions. Keywords: active antenna, Moon, radio astronomy observations, sensitivity
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创建和批准低频射电天文天线,用于从月球背面研究宇宙物体
目的:对有源天线进行理论和实验研究,有源天线是未来月球背面天文台低频射电望远镜天线阵列的一个元件。设计/方法/方法:为了研究由复杂形状的偶极子和低噪声放大器组成的有源天线,我们使用了双端口网络形式的数学模型,其电参数由散射矩阵设置,噪声参数由噪声波频谱密度的协方差矩阵设置。该模型允许在考虑外部和内部噪声源的情况下,对有源天线输出的信噪比进行正确分析。将建模结果与天线特性的实验测量结果进行了比较。利用研制的天线在地球环境条件下进行了一系列射电天文观测。研究结果:在4–40 MHz的宽频率范围内,对射电望远镜有源天线参数进行了数值分析。开发了两种低噪声放大器,用于在空间和地球环境条件下在有源天线中工作。在地球条件下,实验证明,这种射电望远镜可以在低频率下有效解决的问题范围相当广泛——从太阳研究到寻找宇宙学效应。结论:数值模拟和实验测量的结果表明,在大多数频率范围内,它们之间的一致性令人满意。这项工作的结果可用于研究和开发在十米和百米波长范围内工作的有源天线,特别是那些打算在空间环境条件下使用的天线。关键词:有源天线,月球,射电天文学观测,灵敏度
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来源期刊
Radio Physics and Radio Astronomy
Radio Physics and Radio Astronomy Physics and Astronomy-Physics and Astronomy (miscellaneous)
CiteScore
0.60
自引率
0.00%
发文量
18
审稿时长
8 weeks
期刊最新文献
GROUND BASED SUPPORT OF THE SPACE MISSION PARKER PERFORMED WITH UKRAINIAN LOW FREQUENCY RADIO TELESCOPES FRACTAL RADIOPHYSICS. Part 2. FRACTAL AND MULTIFRACTAL ANALYSIS METHODS OF SIGNALS AND PROCESSES OMNIDIRECTIONAL MILLIMETER-WAVELENGTH ANTENNAS BASED ON SEGMENTAL DIELECTRIC RESONATORS WHICH SUPPORT WHISPERING GALLERY MODES V. P. SHESTOPALOV AND HIS SCIENTIFIC SCHOOL: FROM QUASISTATICS TO QUASIOPTICS (to mark V.P.'s birth centenary) PROGRESS IN THE STUDY OF DECAMETER-WAVELENGTH SOLAR RADIO EMISSION WITH UKRAINIAN RADIO TELESCOPES. Part 1. (Invited paper)
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