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Research on electromagnetic scattering and plasma stealth design of S-shaped inlet

机译:S形进气道的电磁散射和等离子体隐身设计研究

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Inlet duct is a strong scattering source of radar waves due to its cavity structure which can make multiple reflections of electromagnetic wave through the cavity walls. Moreover, the complicated cavity structure always makes it difficult to obtain its scattering characteristic. S-shaped inlet is a frequently-used design to reduce return radar wave, but the hiding effect is limited. Relying on its great advantages over traditional stealth technologies, plasma stealth is an emerging technology which attracts the attention of many researchers. Considering the particular structure of S-shaped inlet, a kind of closed plasma was designed to be conformal to the inlet to improve the stealth performance of S-shaped inlet. Firstly, the electromagnetic scattering characteristic of S-shaped airplane inlet was analyzed by using shooting and bouncing ray (SBR) method. Mathematical principle of SBR method was described through three procedures: geometric optical ray tracing, field intensity tracking and physical optics aperture integral. To improve SBR method, a Keller cone model was presented to obtain the contribution of edge diffraction. Then the radar cross section (RCS)of a cylindrical inlet model was calculated using SBR method and the result tallies well with that in reference, which proves the effectiveness of SBR method and the correction model for calculating scattering characteristic of inlet. Then on this basis, the RCS of a S-shaped inlet was calculated by SBR method. At last, to verify the stealth effect of plasma stealth, the RCS of the inlet with plasma was assessed.
机译:入口导管由于其腔结构而成为雷达波的强散射源,它可以使电磁波穿过腔壁多次反射。而且,复杂的空腔结构总是使得难以获得其散射特性。 S形进气口是减少雷达回波的常用设计,但隐藏效果有限。等离子体隐身技术凭借其相对于传统隐身技术的巨大优势,是一种新兴技术,吸引了许多研究人员的注意力。考虑到S形进气口的特殊结构,设计了一种封闭的等离子体使其与进气口共形,以提高S形进气口的隐身性能。首先,采用射弹弹跳(SBR)法对S形飞机进气口的电磁散射特性进行了分析。通过以下三个过程描述了SBR方法的数学原理:几何光线追踪,场强追踪和物理光学孔径积分。为了改进SBR方法,提出了一种Keller锥模型以获得边缘衍射的贡献。然后采用SBR法计算了圆柱状进气道模型的雷达截面,其计算结果与参考值吻合较好,证明了SBR法和校正模型对进气道散射特性计算的有效性。然后,在此基础上,通过SBR方法计算出S形入口的RCS。最后,为了验证等离子体隐身的隐身效果,评估了带有等离子体的进样口的RCS。

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