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Wave Propagation in Cylindrically Stratified Dielectric Media and Application to RCS Characterization

机译:圆柱分层介质中的波传播及其在RCS表征中的应用

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An asymptotic model for the evaluation of the back-scattered field from a dielectric-coated cylinder is presented. The method is applied at aspect angles near broadside incidence, a region where the generated creeping wave (CW) has maximum intensity. Monostatic radar cross section (RCS) calculated from CW poles of the scattered field and their residues is validated with azimuthal CW contributions to the total scattered field computed by the method of moments (MoM). The state space spectral estimation algorithm is used to extract the CWs from MoM data. Meticulous calculations reveal unambiguous contrast between dielectric-coated objects and uncoated, bare metallic configuration. Because of smaller leakage induced by curvature on a coated cylinder in contrast to the metallic cylinder, and coherent interaction between incident wave and the dielectric coating, CWs, which are strongly attenuated by metallic objects, gradually evolve to trapped modes guided inside the dielectric layer for coated objects. With the increase in frequency, the wave trapping becomes more pronounced, and ultimately results in leaky waves with very little tangential ray shedding.
机译:提出了一种渐近模型,用于评估介电涂层圆柱体的反向散射场。该方法应用于宽边入射附近的纵横角,宽边入射是所产生的蠕变波(CW)具有最大强度的区域。根据散射场的CW极点及其残差计算出的单站雷达横截面(RCS),采用矩量CW对由矩量法(MoM)计算的总散射场的贡献进行了验证。状态空间频谱估计算法用于从MoM数据中提取CW。细致的计算揭示了电介质涂层的物体与未涂层的裸金属配置之间的明确对比。由于与金属圆柱体相比,镀层圆柱体上的曲率引起的泄漏较小,并且入射波与介电涂层之间的相干相互作用,被金属物体强烈衰减的CW逐渐演化为在介电层内部导引的陷获模涂层物体。随着频率的增加,陷波变得更加明显,并最终导致泄漏的波具有很少的切线射线脱落。

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