相控阵系统中单元件脉冲衰荡天线的建模

D. Belt, J. Walter, J. Mankowski, J. Dickens
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引用次数: 4

摘要

只提供摘要形式。脉冲衰荡相控阵天线除了具有扫描能力的宽范围主波束外,还能在远场区域提供大量的能量沉积。这使得远程中和简易爆炸装置(ied)在远场距离和几乎在任何方向。脉冲衰荡天线的工作原理是用高电位源给单元件天线充电,并关闭开关,在天线上产生瞬态波反射,然后在空气中传播。脉冲衰荡相控阵的性能在很大程度上取决于阵内各个天线元件的设计和性能。为了实现最佳性能,必须检查诸如工作电压、天线电容、材料损耗、天线几何形状和闭合开关电导特性等因素。通过使用Comsol射频模块瞬态分析功能,我们能够从工作在数百MHz范围内的单极子和偶极子脉冲衰荡天线开始表征各种参数。我们已经检查并比较了从实验设置到仿真模型的结果,以便更好地表征天线的各个组件。我们还研究了理想闭合开关与实验设置闭合开关之间的差异,这极大地影响了天线的远场范围。我们检查了天线的材料特性,以改善损耗并增加系统电容,从而增加每次天线放电的射频周期数。本文的研究结果为脉冲环衰天线的精确模型提供了依据,并为今后开发更复杂的几何结构提供了可能,从而提高脉冲环衰相控阵的工作性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modeling of a Single Element Pulsed Ring-Down Antenna for Implementation in a Phased Array System
Summary form only given. A pulsed ring-down phased array antenna provides substantial energy deposition in the far field region in addition to a broad range main beam with scanning capabilities. This allows remote neutralization of Improvised explosive devices (IEDs) at far field distances and in virtually any direction. The pulsed ring-down antenna operates by charging the single element antenna with a high potential source and closing a switch to develop transient wave reflections on the antenna which then propagate in air. The performance of a pulsed ring-down phased arrav is highly contingent upon the design and performance of the individual antenna elements within the array. Such factors as operating voltage, antenna capacitance, material losses, antenna geometry and closing switch conductance characteristics must be examined for optimal performance to be achieved. By utilizing the Comsol RF module transient analysis functions, we are able to characterize the various parameters beginning with a monopole and a dipole pulsed ring-down antenna operating in the hundreds of MHz range. We have examined and compared the results achieved from the experimental setup to the simulation model in order to better characterize the individual components of the antenna. We have also examined the discrepancies between an ideal closing switch and the experimental setup closing switch, which dramatically affects the far field range of the antenna. We have examined the material properties of the antenna to improve losses and increase system capacitance allowing an increase in the number of RF cycles per antenna discharge. With the results presented, an accurate model of pulsed ring-down antennas is available and will allow future development of more complex geometries that will improve the operation of pulsed ring- down phased array.
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