首页> 外文OA文献 >EFFECT OF THE GROUND PARAMETER VARIATIONS ON THE SENSITIVITY OF AN ACTIVE PHASED ARRAY ANTENNA ELEMENT OF THE LOW-FREQUENCY GURT RADIO TELESCOPE
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EFFECT OF THE GROUND PARAMETER VARIATIONS ON THE SENSITIVITY OF AN ACTIVE PHASED ARRAY ANTENNA ELEMENT OF THE LOW-FREQUENCY GURT RADIO TELESCOPE

机译:地面参数变化对低频古尔特射频望远镜的有源相控阵天线元件的敏感性

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摘要

Purpose: Theoretical studies of sensitivity fluctuations of a phased array antenna element for the GURT radio telescope of the new generation caused by seasonal changes of the ground parameters.Design/methodology/approach: A mathematical model of an active antenna represented as a two-port network, whose electrical parameters are described with the scattering matrix and the noise parameters – with the covariation matrix of noise wave spectral densities was used for studying the GURT phased array antenna element composed of a dipole and a low-noise amplifier (LNA). Such a model allows a correct analysis of a signal-to-noise ratio at the active antenna output accounting for all internal and external noise sources. Findings: A numerical analysis of the GURT radio telescope phased array antenna element characteristics was made in a wide frequency range of 8 to 80 MHz. It was found that the seasonal fluctuations of permittivity and conductivity of the ground, which make about 8 and 6 dB correspondingly, mostly affect the dipole efficiency and its impedance matching with the LNA. Variations of both parameters reach 3 dB but have the opposite sign, therefore their effect upon the active antenna sensitivity is mostly compensated. As a result, it is shown that the seasonal fluctuations of the ground parameters do not result in the substantial active antenna sensitivity variations, which lay in about the 0.5 dB range, and only at the lowest frequencies grow to about the 1.5 dB value.Conclusions: The research efforts made have shown that the seasonal fluctuations of the ground electrophysical parameters result in small variations of the sensitivity of the GURT phased ±0.75 dB, which cannot array antenna element, not exceeding affect the quality of radio-astronomy observations considerably. The results of this work can be useful in the development and researches of the ground active phased array antennas designed for operation in the meter and decameter wavelength ranges.
机译:目的:由地面参数季节变化引起的新一代阵列天线元件的敏感性波动的敏感性波动的理论研究。设计/方法/方法:表示为双端口网络的有源天线的数学模型,其电气参数用散射矩阵和噪声参数描述 - 利用噪声波谱密度的协变矩阵用于研究咕噜声由偶极子和低噪声放大器(LNA)组成的相控阵天线元件。这种模型允许对所有内部和外部噪声源的有源天线输出计费的信噪比进行正确分析。调查结果:Gurt Radio Telescope相控阵天线元件特性的数值分析在8至80 MHz的宽频范围内进行。结果发现,地面的允许率和电导率的季节性波动,其相应地使大约8和6dB产生约8和6dB,主要影响偶极效率及其与LNA匹配的阻抗匹配。两个参数的变化达到3 dB,但具有相反的符号,因此它们对主动天线敏感性的影响大多数补偿。结果表明,地面参数的季节性波动不会导致大致的有源天线敏感性变化,其置于约0.5dB范围内,并且仅在最低频率下生长至约1.5dB值。结论:研究努力表明,地面电神法参数的季节性波动导致众所周知的诸如阵列天线元件的诸如阵列±0.75dB的敏感性的小变化,不超过无线电天文观测的质量。该工作的结果可用于开发和研究地面主动相位阵列天线,该阵列天线设计用于仪表和蓄电池波长范围。

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