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Grating Lobe Reduction in Scanning Phased Array Antennas With Large Element Spacing

机译:大元素间距扫描相控阵天线的光栅波瓣减少

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Large element spacing in phased array antennas generally causes grating lobes, which start to exacerbate for wide scan angles. Herein, a new approach is proposed to reduce the grating lobes of planar phased array antennas with considerably large element spacing in the order of one wavelength for both broadside and scanned radiation patterns up to 45°. The array has a seven-element hexagonal configuration, consisting of dual-mode circular microstrip antennas. It is shown that for small scan angles up to 8°, a tapered amplitude distribution reduces the grating lobes to below −30 dB, when only the dominant mode is excited in the antenna element. As for wider scan angles up to 45°, an additional higher order mode needs to be excited as well to reduce the grating lobes down to −30 dB for the large element spacing of one wavelength. The proposed method also proves to be effective for wider scan angles up to 60° for element spacing of three quarters of a wavelength. This approach leads to the realization of thinned arrays with less number of elements, in which the weighting functions and mode excitation of the elements can be controlled by an adaptive signal processing unit in scanning phased array antennas.
机译:相控阵天线中的大元件间距通常会导致光栅波瓣,对于宽扫描角,该波瓣会加剧。在此,提出了一种新方法来减小具有相当大的元件间隔的平面相控阵天线的光栅波瓣,对于宽边和扫描辐射方向图,该间隔都在一个波长的范围内,最大可达45°。该阵列具有七元素六边形配置,由双模圆形微带天线组成。结果表明,对于最大8°的小扫描角,当仅在天线元件中激发主模时,锥形幅度分布将光栅波瓣减小到-30 dB以下。对于高达45°的较宽扫描角,对于一个波长的大元件间距,还需要激发其他高阶模,以将光栅波瓣减小至-30 dB。对于四分之三的波长的元件间距,所提出的方法也被证明对高达60°的较宽扫描角有效。该方法导致具有更少数量的元件的变薄阵列的实现,其中可以通过扫描相控阵天线中的自适应信号处理单元来控制元件的加权功能和模式激励。

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