外太空监测雷达站中作为匹配装置的半导体开关元件上的可调电路

S. Kulikov, S. Y. Ashchunin, V. O. Korolev, V. Aldokhina
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引用次数: 1

摘要

问题的表述。相控阵天线(PAA)由大量发射体组成,在空间扫描时,它们之间以阻抗的形式相互作用。它影响了PAA收发模块与发射机的匹配质量,导致雷达站的功率损失和探测距离损失很大。在开关元件上采用可调超高频(SHF)匹配电路,在改变天线方向图波束在空间中的位置时,提高了PAA发射器的匹配质量。文章证实,由于在器件中使用开关元件,开发超高频可调匹配电路的功能能力有所增加,这可以减少相控天线阵列中辐射元件输入阻抗变化引起的因素的影响。基于所提出的数学模型,考虑了辐射元件之间相互影响所产生的输入电阻变化,从而可以研究被控电路在结构和参数变化时的电位特性。该结构和参数的选择方法使器件能够根据输入复杂负载电阻的变化进行调整,并保证最小的电压驻波比。现实意义。所提出的设备允许计算实现的可调匹配电路,使用现有的材料和制造技术,可以减少损耗并增加范围。在此基础上建立了微带设计的实验模型,并进行了现场实验,验证了该方法的正确性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Adjustable circuits on semiconductor switching elements as a matching device in radar stations for outer space monitoring
Formulation of the problem. When scanning in space by a phased array antenna (PAA), which consists of a large number of emitters, there is an interaction between them in the form of impedance. It affects the matching quality of the receiving-transmitting module of the PAA with the emitter and leads to significant losses of power and detection range of the radar station.Objective. Improving the quality of the PAA emitters matching when changing the position of the antenna directional pattern beam in space due to the use of adjustable super high frequency (SHF) matching circuits on the switching elements.Results. The article substantiates an increase in the functional capabilities of the development of adjustable matching circuits of super-high frequencies due to the use of switching elements in the device, which allow reducing the influence of factors caused by a change in the input impedance of the radiating element in phased antenna arrays. Based on the presented mathematical model, the change in the input resistance of the radiating elements is taken into account, which arises due to their mutual influence, and makes it possible to research the potential characteristics of controlled circuits when their structure and parameters change. The method of choosing the structure and parameters allows the device to be adjusted to the change in the input complex load resistance and ensure the minimum voltage standing-wave ratio.Practical significance. The proposed device allows for the calculation of implemented adjustable matching circuits, which, with existing materials and manufacturing technologies, provide a decrease in losses and an increase in range. An experimental model of microstrip design was developed based on the proposed device and a field experiment was carried out, which confirmed the correctness of the approach to the developed device.
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