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An Active Antenna Subarray for the Low-Frequency Radio Telescope GURT—Part II: Numerical Analysis and Experiment

机译:低频射电望远镜GURT的有源天线子阵列-第二部分:数值分析和实验

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摘要

This second part of two articles' sequence presents the detailed numerical analysis of electrical and noise parameters of a subarray of the Giant Ukrainian Radio Telescope (GURT) designed for operation in the frequency range of 8-80 MHz. The theoretical model of the subarray and calculation technique of its parameters developed in the first part is used. Frequency behaviors of the absorption area, radiation efficiency, and system noise temperature budget of the subarray are studied. Special attention is paid to the subarray sensitivity given in terms of sky noise dominance (SND) and system-equivalent flux density (SEFD). The calculation results show that strong mutual coupling between subarray elements enables a significant increase in the subarray SND and enhancing overall its performance. The frequency dependences of the system noise temperature for 23 beams of the subarray, obtained by in situ measurements, are presented. A good agreement between the measured and calculated results well enough validates the subarray theoretical model.
机译:这两篇文章的第二部分介绍了为在8-80 MHz频率范围内工作而设计的巨型乌克兰射电望远镜(GURT)子阵列的电和噪声参数的详细数值分析。使用在第一部分中开发的子阵列的理论模型及其参数的计算技术。研究了子阵列的吸收面积,辐射效率和系统噪声温度预算的频率特性。要特别注意以天空噪声优势(SND)和系统等效通量密度(SEFD)给出的子阵列灵敏度。计算结果表明,子阵列元素之间的强相互耦合使子阵列SND显着增加,并增强了其整体性能。给出了通过现场测量获得的子阵列的23束系统噪声温度的频率依赖性。测量结果与计算结果之间的良好一致性足以验证子阵列理论模型。

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