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Scattering control using square and hexagonal checkerboard surfaces

机译:使用正方形和六角形棋盘面进行散射控制

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The reflection variation property of Electromagnetic Band-Gap (EBG) structures can be utilized to reduce the Radar Cross Section (RCS) of ground planes. Combining PEC and EBG structures on the same ground plane forms checkerboard surfaces which can achieve a RCS reduction in a narrow frequency band. However, a wider band RCS reduction can be realized by combining two different EBG structures. It can realize 60% frequency bandwidth for the 10-dB RCS reduction. The scattered fields for square checkerboard surfaces are re-directed toward four quadrants, while the scattering for hexagonal checkerboard surfaces are toward six directions. The maxima of the RCS for checkerboard surfaces in the four quadrants are 10 dB less than those of the PEC ground plane, and more than 19 dB RCS reduction is obtained along the principal planes. Both bistatic and monostatic RCS are compared with those of the equal-sized PEC ground planes.
机译:电磁带隙(EBG)结构的反射变化特性可用于减小接地平面的雷达横截面(RCS)。将PEC和EBG结构组合在同一接地平面上可形成棋盘表面,该棋盘表面可在较窄的频带内实现RCS减小。但是,可以通过组合两个不同的EBG结构来实现更宽频带的RCS降低。它可以实现60%的频率带宽,以降低10 dB RCS。正方形棋盘表面的散射场被重定向到四个象限,而六角形棋盘表面的散射场则指向六个方向。四个象限中棋盘表面的RCS最大值比PEC接地平面的RCS最大值小10 dB,并且沿主平面获得的RCS减小幅度超过19 dB。将双静态和单静态RCS与相同大小的PEC接地平面的RCS进行了比较。

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