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Local Area Radiation Sidelobe Suppression of Reflector Antennas by Embedding Periodic Metallic Elements Along the Edge Boundary

机译:通过沿边缘边界嵌入周期性金属元素来抑制反射天线的局部辐射旁瓣

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摘要

This communication presents a simple and useful technique to suppress the radiation sidelobe levels (SLLs) of reflector antennas by embedding reflecting elements around the edge boundary. Due to the fact that sidelobes mainly arise from the edge diffractions, the reflecting elements can alter the phase distribution of induced currents along the edge boundary, and therefore reduce the sidelobes through the destructive cancellation of fields radiated from these elements. The desired phases are found through the implementation of pattern synthesis technique such as genetic algorithm to optimize the SLLs. This technique of edge current phase alternation may be employed, in conjunction with using a tapered feed radiation to illuminate the reflector, to control both amplitudes and phases of edge currents. Thus, the edge diffraction mechanism may be better controlled to optimize SLLs. In this communication, both resonant and nonresonant types of metallic elements are implemented and compared to illustrate their characteristics of radiations in SLL suppression. This technique is particularly useful to suppress the SLLs within a local angular region. Numerical results based on the method of moment analysis are presented to validate the feasibility.
机译:该通信提出了一种简单而有用的技术,通过在边缘边界周围嵌入反射元素来抑制反射器天线的辐射旁瓣电平(SLL)。由于旁瓣主要来自边缘衍射这一事实,反射元件可以改变沿边缘边界的感应电流的相位分布,并因此通过破坏性地消除从这些元素辐射的场来减小旁瓣。通过实施模式合成技术(例如遗传算法以优化SLL)可以找到所需的阶段。可以结合使用渐进馈电辐射来照射反射器来采用边缘电流相位交替的这种技术,以控制边缘电流的幅度和相位。因此,可以更好地控制边缘衍射机制以优化SLL。在此通信中,实现并比较了共振和非共振类型的金属元素,以说明它们在SLL抑制中的辐射特性。该技术对于抑制局部角度区域内的SLL特别有用。给出了基于力矩分析方法的数值结果,验证了可行性。

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