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A Modified Dolph-Chebyshev Approach for the Synthesis of Low Sidelobe Beampatterns With Adjustable Beamwidth

机译:改进的Dolph-Chebyshev方法用于合成具有可调波束宽度的低旁瓣波束图形

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摘要

A new method for the synthesis of low sidelobe beampatterns is presented, which enables beamwidth and sidelobe level to be adjusted with relative independence. Unlike existing methods for the synthesis of arbitrary beampatterns, e.g., [8]-[10], the proposed method is based on a modification of the Dolph-Chebyshev [1] design and requires only a few parameters to be optimized, regardless of the array size. Due to its much lower complexity, the method is implementable in wireless communications applications requiring fast and cheap, adaptive algorithms for low sidelobe arrays [5], [6], [12]. The method is applicable, for instance, to the design of adaptive sector-like antennas with uniform circular arrays (UCAs), and to the design of quasi-steering-invariant beampatterns with uniform linear arrays (ULAs).
机译:提出了一种合成低旁瓣波束图形的新方法,该方法可以相对独立地调整波束宽度和旁瓣水平。与现有的用于合成任意波束图案的方法(例如[8]-[10])不同,该方法基于Dolph-Chebyshev [1]设计的修改,并且仅需优化几个参数即可,数组大小。由于其复杂度低得多,因此该方法可在需要针对低旁瓣阵列的快速,廉价,自适应算法的无线通信应用中实现[5],[6],[12]。该方法可应用于例如具有均匀圆形阵列(UCA)的自适应扇形天线的设计,以及具有均匀线性阵列(ULA)的准转向不变波束图案的设计。

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