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Integration and Operation of an Electrically Small Magnetic EZ Antenna With a High-Power Standing Wave Oscillator Source

机译:具有高功率驻波振荡器源的电子小电磁EZ天线的集成和运行

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摘要

© 2015 IEEE. The efficacy of the three-dimensional, rectangular magnetic EZ antenna for use with mesoband high-power microwave (HPM) sources has been demonstrated previously. It overcomes the typical bulky and massive impedance-matching components found currently in most HPM systems, making it an attractive option when space is very limited. However, its extremely compact nature presents practical challenges when dealing with extremely high-power sources due to the associated local field enhancements near the feed and the near-field resonant parasitic element. This letter presents a fully integrated, high-voltage source and radiating system that has several improvements in the antenna, source, and power system that have not before been demonstrated. The full system includes a ferroelectric generator, standing wave oscillator source, and electrically small antenna (ka = 0.37) operating at 510 MHz that can be packaged inside a 15-cm-diameter tube. This small diameter results in a quarter-wavelength-diameter ground plane, and the effects of this small ground plane on the radiation characteristics are explored. The development of a pressurized radome allows for operation at 73.6 kV, significantly higher than previous studies.
机译:©2015 IEEE。先前已经证明了用于中频带高功率微波(HPM)源的三维矩形磁性EZ天线的功效。它克服了目前大多数HPM系统中常见的典型笨重阻抗匹配组件,因此在空间非常有限的情况下成为有吸引力的选择。然而,由于在馈电和近场谐振寄生元件附近的相关局部场增强,当处理极高功率源时,其极其紧凑的性质提出了实际挑战。这封信提出了一个完全集成的高压源和辐射系统,该系统对天线,源和电源系统进行了一些以前没有证明的改进。整个系统包括铁电发电机,驻波振荡器源和工作在510 MHz的电小天线(ka = 0.37),该天线可以包装在直径15厘米的管内。这个小直径形成一个四分之一波长直径的地平面,并探索了这个小地平面对辐射特性的影响。加压天线罩的开发允许在73.6 kV的电压下运行,大大高于以前的研究。

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