平面波照射下导弹结构的时域近场

J. P. Donohoe
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摘要

只提供摘要形式。讨论了瞬态电磁场与导电圆柱体的相互作用。公转体模型的物理特征和入射波的特征对于相互作用的方式是至关重要的。所研究的导波器是一种简化的导弹结构,由一端封闭的直筒体和另一端呈直线锥形的圆孔组成。考虑了不同类型的入射超宽带平面波。研究了标准高斯时间波形以及类似于短单周期正弦波的波(称为非高斯平面波)。特别有趣的结构响应是BOR孔径中心的轴向电场,它代表了导弹头锥体中的场。翅片和其他外部细节在该模型中被省略,因为主要结构共振对应于纵向皮肤电流,发生在BOR的轴向长度约为一半波长的频率上。通过以下方法确定了BOR对给定入射脉冲的时域响应。通过矩量法在频域中计算了BOR对真实时域脉冲(平坦谱)的响应。计算的频率范围由入射脉冲的频谱含量的上限决定。求出了入射脉冲谱与脉冲谱响应的乘积,并确定了总体时域响应。
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Temporal near fields of a missile structure under plane wave illumination
Summary form only given. Discusses the interaction of a transient EM field with a conducting cylindrical body. The physical features of the body-of-revolution (BOR) model and the characteristics of the incident wave are of prime importance with regard to the means of interaction. The conducting BOR studied is a simplified missile structure consisting of a straight cylinder which is closed with an endcap on one end and linearly-tapered to a circular aperture on the opposite end. Different types of incident ultra-wideband plane waves are considered. The standard Gaussian temporal waveshape is investigated along with a wave that resembles a short single cycle sine wave (designated as the non-Gaussian plane wave). The structure response which is of particular interest is the axial electric field at the center of the BOR aperture which represents the field in the nose cone of the missile. The fins and other external details are omitted in this model since the dominant structure resonance corresponds to longitudinal skin currents occurring at a frequency where the axial length of the BOR is approximately one-half wavelength. The time domain response of the BOR to a given incident pulse is determined via the following approach. The response of the BOR to a true time-domain impulse (flat spectrum) is computed in the frequency domain via the method of moments. The range of frequencies computed is governed by the upper limit on the spectral content of the incident pulse. The product of the incident pulse spectrum and the impulse spectral response is found and the overall time-domain response is determined.
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