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Analytical solution for early-time transient radiation frompulse-excited parabolic reflector antennas

机译:脉冲激发抛物面反射器天线的早期瞬态辐射的解析解

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摘要

A closed-form analytical solution is developed for predicting the early-time transient electromagnetic fields which are generated by a perfectly conducting parabolic reflector antenna when it is illuminated by a transient step spherical wave due to an elemental Huygen's source located at the focus. This closed-form time-domain solution, which is valid both near and far from the reflector (and anywhere in the forward region) can be used via the convolution theorem to efficiently obtain the early-time transient fields generated by the same parabolic reflector antenna when it is illuminated by a realistic finite-energy pulse which emanates as a spherical wave from the focus. The transient solution is developed here by analytically inverting, in closed form, the corresponding frequency-domain solution in terms of a radiation integral that employs an asymptotic high-frequency geometrical optics (GO)-based approximation for the fields in the aperture. Numerical results are presented for the transient fields both near and far from the reflector. The fields on boresight exhibit an impulse-like behavior similar to that of the impulse radiating antenna (IRA) introduced by Baum et al. (1989, 1993)
机译:开发了一种封闭形式的分析解决方案,用于预测由瞬态阶跃球面波照射的完美传导的抛物面反射器天线所产生的早期瞬态电磁场,该瞬态阶跃球状天线由于位于焦点处的元素惠更斯源而产生。可以通过卷积定理使用这种闭合形式的时域解,该解在靠近反射器和远离反射器时都有效(并且在前向区域中的任何位置),可以有效地获得由同一抛物面反射器天线生成的早期瞬变场当它被现实的有限能量脉冲照亮时,该脉冲从焦点发出为球面波。在此,通过以辐射形式对相应的频域解进行解析式倒置,从而开发出了瞬态解,该辐射解采用了基于渐近高频几何光学(GO)的孔径场近似值。数值结果给出了靠近和远离反射器的瞬态场。视轴上的场表现出类似于鲍姆等人提出的脉冲辐射天线(IRA)的类似脉冲的行为。 (1989,1993)

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