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Simple Formula for Aperture Efficiency Reduction Due to Grating Lobes in Planar Phased Arrays

机译:平面相控阵中光栅凸角导致孔径效率降低的简单公式

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This paper numerically validates a simple formula to calculate the aperture efficiency reduction due to grating lobes in planar phased arrays. Array antennas with element spacing greater than one wavelength will produce grating lobes. Grating lobes are not a big problem in most new millimeter-wave applications, except for the fact that they reduce the aperture efficiency and thereby normally the directivity. When the element pattern is known, the simple formula can be used to calculate the aperture efficiency in the presence of grating lobes. The formula is verified by the simulations of a large uniformly excited planar slot array. The agreement is good for both broadside radiation and a phased main beam, even if we use the far field of an isolated slot. Using the far field of the embedded slot element gives almost the same results, except when a grating lobe radiates along the ground plane and the isolated element pattern is nonzero in this direction.
机译:本文通过数值验证了一个简单的公式来计算由于平面相控阵中的光栅波瓣导致的孔径效率降低。元件间距大于一个波长的阵列天线会产生光栅波瓣。在大多数新的毫米波应用中,光栅波瓣不是一个大问题,除了它们降低孔径效率并因此通常会降低方向性。当已知元件图案时,可以使用简单公式来计算存在光栅波瓣时的孔径效率。通过大型均匀激发平面缝阵列的仿真验证了该公式。即使我们使用隔离槽的远场,该协议对宽边辐射和相控主光束都有利。使用嵌入式缝隙元件的远场可获得几乎相同的结果,除了当光栅波瓣沿接地面辐射并且隔离的元件图案在该方向上不为零时。

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