Mathematical Model of an Antenna-Waveguide Path with Separation of Signals by Frequency–Polarization

D. D. Gabriel’ean, A. E. Korovkin, S. I. Boychuk, S. Dvornikov, M. R. Bibarsov, G. S. Bibarsova
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引用次数: 1

Abstract

Introduction. The creation of antenna-waveguide paths of multi-band mirror antennas (AWP MMA) is a significant task in the development of antenna-feeder devices for satellite communication systems (SSS). This task involves the construction of an adequate mathematical model of AWP MMA both without and with the implementation of an auto-tracking function built using the "frequency separation – polarization separation" method. However, the existing mathematical models have been developed only for specific AWP MMA types, thus making them unsuitable for the development of new AWP MMA. The model proposed in this paper can be used for an arbitrary number of combined frequency ranges and types of polarization.Aim. Development of a mathematical model of the AWP MMA of SSS both without and with the implementation of an auto-tracking function built using the "frequency separation – polarization separation" method.Materials and methods. The mathematical model under consideration assumes a description of the AWP MMA using block matrices. Each of these matrices describes the complex amplitudes of signals arising in each of the AWP MMA devices. This, in turn, makes it possible to analyze the influence of the parameters of each device on the characteristics of the AWP MMA of SSS as a whole with an arbitrary number of combined frequency ranges and types of polarization.Results. Two options for the construction of AWP MMA of SSS are proposed. The first option can be used in communication system antennas with software support, while the second option is applicable when a monopulse tracking method is implemented. To construct an AWP MMA model, it is proposed to use a matrix description of the characteristics of AWP MMA devices. This allows the structure of the considered AWP MMA to be varied within a wide range.Conclusion. The developed mathematical model makes it possible to describe the characteristics of each of the devices in the AWP MMA system using a certain multipole. The proposed model provides ample opportunities for controlling, at the stages of development, production and debugging, not only the characteristics of each device in the AWP MMA, but also the transmission coefficient and polarization isolation in each frequency range of the entire AWP MMA. The presented dependencies can be used to assess the relationship between parameter tolerances and the limits of changes in the characteristics of the motor vehicle.
频率极化分离天线波导路径的数学模型
介绍。多波段镜像天线天线波导路径的创建是卫星通信系统天线馈线器件开发中的一个重要课题。该任务包括在不使用和使用“频率分离-极化分离”方法构建自动跟踪函数的情况下构建一个适当的AWP MMA数学模型。然而,现有的数学模型只针对特定的AWP MMA类型,因此不适合开发新的AWP MMA。本文提出的模型可用于任意数量的组合频率范围和极化类型。建立了采用“频率分离-极化分离”方法建立的自动跟踪函数的SSS AWP MMA数学模型。材料和方法。所考虑的数学模型假设AWP MMA的描述使用块矩阵。这些矩阵中的每一个都描述了每个AWP MMA设备中产生的信号的复杂幅度。这反过来又使得在任意数量的组合频率范围和极化类型下,分析每个器件的参数对SSS的AWP MMA特性的影响成为可能。提出了两种建设SSS AWP MMA的方案。第一种方案可用于有软件支持的通信系统天线,第二种方案适用于实现单脉冲跟踪方法的情况。为了构建AWP MMA模型,提出使用矩阵描述AWP MMA设备的特性。这使得所考虑的AWP MMA的结构可以在很大的范围内变化。所建立的数学模型可以用一定的多极子来描述AWP MMA系统中每个设备的特性。该模型为在开发、生产和调试阶段控制AWP MMA中每个设备的特性,以及整个AWP MMA在每个频率范围内的传输系数和极化隔离提供了充分的机会。所提出的依赖关系可用于评估参数公差与机动车辆特性变化极限之间的关系。
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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