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TD-UTD Solutions for the Transient Radiation and Surface Fields of Pulsed Antennas Placed on PEC Smooth Convex Surfaces

机译:置于PEC光滑凸表面上的脉冲天线的瞬态辐射和表面场的TD-UTD解决方案

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摘要

A time-domain formulation of the uniform geometrical theory of diffraction (TD-UTD) is developed for predicting the transient radiation and surface fields of elemental pulsed antennas placed directly on a smooth perfectly conducting, arbitrary convex surface. The TD-UTD solution is obtained by employing an analytic time transform (ATT) for inverting into time the corresponding frequency domain UTD (FD-UTD) solution. An elemental antenna on the convex surface is excited by a step function in time and a TD-UTD solution is obtained first. The TD-UTD response to a more general pulsed excitation of the elemental current is then found via an efficient convolution of the TD-UTD solution for the step function excitation with the time derivative of the general pulsed excitation. In particular, this convolution integral is essentially evaluated in closed form after representing the time derivative of the general pulsed excitation by a small sum of simple signals whose frequency domain description is a sum of complex exponential functions. Some numerical examples are presented to illustrate the utility of these TD-UTD solutions for pulsed antennas on a convex body.
机译:开发了统一几何衍射理论(TD-UTD)的时域公式,用于预测直接放置在光滑,完美导电的任意凸面上的元素脉冲天线的瞬态辐射和表面场。 TD-UTD解决方案是通过采用解析时间变换(ATT)将相应的频域UTD(FD-UTD)解决方案转化为时间而获得的。通过时间上的阶跃函数来激发凸面上的基本天线,并首先获得TD-UTD解决方案。然后,通过针对步函数激励的TD-UTD解的有效卷积与常规脉冲激励的时间导数的有效卷积,得出对元素电流的更通用脉冲激励的TD-UTD响应。特别地,在通过少量的简单信号表示通用脉冲激励的时间导数之后,以基本形式以闭合形式评估该卷积积分,这些简单信号的频域描述是复杂的指数函数的总和。提出了一些数值示例,以说明这些TD-UTD解决方案对凸体上脉冲天线的实用性。

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