移相器故障对开槽波导阵列天线特性的影响研究

M. R. Bibarsov
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引用次数: 0

摘要

导言。目前,移相器(PS)故障对相位天线阵列(尤其是槽式波导阵列天线(SWAA))特性的影响是一个重大问题。对出版物的回顾表明,人们对 PS 故障的关注不够。研究当 PS 相位值等于零而非所需值时,发生 PS 故障时 SWAA 的特性。采用统计建模方法研究故障对 SWAA 特性的影响。计算使用 Mathcad 15 软件包。提出了 PS 故障对 SWAA 特性影响的统计建模算法。给出了辐射模式与统计样本体积和故障 PS 数量之间的关系。研究了 50 个元件中 5 至 35 个发射器的故障情况。得出了以下特征的变化:标准偏差--从 0.064 到 0.18,辐射模式宽度--从 8% 到 18%,边叶水平--从 13% 到 59%,辐射功率--从 0.9 到 0.3。所获得的结果可用于带天线阵列的无线电电子系统的开发阶段。今后的工作将涉及随机建立相位和随机值的 PS 故障,以及功率不进入发射器的 PS 故障情况。另一个重要方向是补偿天线元件故障造成的失真。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Research into the Impact of Phase Shifter Failures on the Characteristics of Slotted Waveguide Array Antenna
Introduction. Currently, the impact of phase shifter (PS) failures on the characteristics of phased antenna arrays, slotted waveguide array antenna (SWAA) in particular, represents a significant problem. A review of publications shows that insufficient attention has been paid to PS failures.Aim. To investigate the characteristics of a SWAA in the event of PS failures, when their phase takes a value equal to zero instead of the required value.Materials and methods. The methods of statistical modeling methods were used to study the impact of failures on SWA characteristics. Calculations were carried using the Mathcad 15 software package.Results. An algorithm for statistical modeling of the impact of PS failures on SWAA characteristics is proposed. A relationship that connects the radiation pattern with the volume of the statistical sample and the number of failed PSs is given. The malfunctions of emitters from 5 to 35 out of 50 elements were studied. Changes in the following characteristics were obtained: standard deviation – from 0.064 to 0.18, radiation pattern width – from 8 to 18 %, the level of side lobes – from 13 to 59 %, radiation power – from 0.9 to 0.3.Conclusion. The results obtained can be used in radio-electronic systems with antenna arrays at the stage of their development. Future work will address PS failures with phases being established randomly and with random values, as well as the case of PS failures where power does not pass into the emitter. Another important direction concerns compensation of distortions resulting from failures of antenna elements.
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