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Feed Signal Influence and Potential Performances of a Compact Radiation Source Based on a Helical Antenna

机译:基于螺旋天线的紧凑型辐射源的馈电信号影响及其潜在性能

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In the class of emerging high power electromagnetic sources, a complete pulsed power source, named MOUNA (French acronym of “Module Oscillant Utilisant une Nouvelle Architecture”) has been developed. This device must transmit waveforms with a wide frequency band and a high figure-of-merit. To improve the overall performance of the MOUNA system while maintaining its compact size, two approaches are being explored in the paper: the replacement of the dipole antenna by a helical antenna and its feeding signal influence. Helical antenna is cylindrical shape and relatively compact. It offers relatively good gain factor and directivity. The waveform delivered to the antenna is directly related to the amplitude of the radiated electric field. Therefore, different waveforms (step pulse, Gaussian pulse, bipolar pulse and damped sinusoid) are compared to point out the feed signal influence on the radiated electric field. Switch oscillators appear to be considered as interesting resonant sources for driving an antenna. The novel radiating source consists of a primary power source, a resonant transformer, a coaxial transmission line damped oscillator (also termed as coaxial resonator), and a helical antenna. This high voltage pulsed source is very compact (volume of only 2500 cc without the antenna). Our study aims at designing the antenna (number of turns, size…) and a coaxial damped oscillator directly implemented at the output of the transformer. A CST-based simulation is proposed to predict the performances of this wideband source.
机译:在新兴的高功率电磁源类别中,已经开发了一种名为MOUNA(“ Module Oscillant Utilisant une Nouvelle Architecture”的法语缩写)的完整脉冲电源。该设备必须发送具有宽频带和高品质因数的波形。为了在保持其紧凑尺寸的同时提高MOUNA系统的整体性能,本文探索了两种方法:用螺旋天线代替偶极天线以及其馈电信号的影响。螺旋天线是圆柱形的并且相对紧凑。它提供了相对较好的增益因子和方向性。传送到天线的波形与辐射电场的幅度直接相关。因此,比较了不同的波形(步进脉冲,高斯脉冲,双极性脉冲和阻尼正弦波)以指出馈电信号对辐射电场的影响。开关振荡器似乎被认为是驱动天线的有趣谐振源。新颖的辐射源由主电源,谐振变压器,同轴传输线阻尼振荡器(也称为同轴谐振器)和螺旋天线组成。这种高压脉冲源非常紧凑(不带天线的体积仅为2500 cc)。我们的研究旨在设计天线(匝数,尺寸……)和直接在变压器输出端实现的同轴阻尼振荡器。提出了基于CST的仿真来预测此宽带信号源的性能。

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