Electronic Control Board for Phased Antenna Array Research and Prototyping

M. Pokorny, I. Veřtát, Jiří Masopust
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Abstract

Current state-of-the-art phased antenna arrays used in modern generations of mobile networks and radars in terrestrial applications or as spacecraft antennas in space applications tend to be very complex and expensive devices with many mutually coupled elements and many input/output ports that are excited with varying amplitude and phase. Also, the simulation and design of such complex antenna arrays may not be accurate due to many sources of uncertainty, such as inhomogeneity of high-frequency substrate properties over large area, manufacturing tolerances, idealized component models, etc. Therefore, simpler solutions of these antenna arrays in the form of sparse arrays, non-uniform arrays or arrays with parasitic elements are intensively studied. In this paper, we present an experimental electronic control board, which is used in our research of simplified phased array antennas. This digitally controllable board, in addition to the commonly used changes in the amplitude and phase of the propagated signal, can connect the individual antenna elements to a programmable impedance load, variable in the capacitive and inductive range. The aim of the implementation of this control electronic board is to study the influence of the mutual couplings of actively excited elements of the antenna array and parasitic elements loaded by variable impedance load on the resulting properties of the antenna arrays.
相控阵电子控制板的研究与原型设计
当前最先进的相控天线阵列用于现代移动网络和地面应用中的雷达或空间应用中的航天器天线,往往是非常复杂和昂贵的设备,具有许多相互耦合的元件和许多以不同幅度和相位激励的输入/输出端口。此外,由于许多不确定性来源,例如大面积高频衬底特性的不均匀性,制造公差,理想化的组件模型等,这种复杂天线阵列的模拟和设计可能不准确。因此,对稀疏阵列、非均匀阵列或寄生单元阵列等天线阵列的简单解进行了深入研究。本文提出了一种实验电子控制板,用于简化相控阵天线的研究。这种数字可控板,除了常用的传播信号的幅度和相位变化外,还可以将单个天线元件连接到可编程阻抗负载上,在电容和电感范围内可变。该控制电子板的实现目的是研究天线阵主动激励元件与受变阻抗负载的寄生元件相互耦合对天线阵性能的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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