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A New Low-Sidelobe Pattern Synthesis Technique for Equally Spaced Linear Arrays

机译:等距线阵的低Sidelobe模式合成新技术

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A class of nonuniformly excited, equally spaced linear arrays (ESLAs) that can meet design requirements for half-power beamwidth and sidelobe level (SLL) without any limitation is introduced. These arrays are constructed using the patterns of uniformly excited arrays as building blocks, thus lending themselves to simple analytical descriptions and analysis. A design procedure is presented, which can be used to determine the required number of elements and the excitation currents to achieve the specified radiation properties. For these arrays, the element currents always decrease monotonically from a maximum at the array center to a minimum value at edge elements. This property can be exploited to limit the current taper ratio (CTR) when the number of elements is very large. Simulation results indicate that these arrays can provide half-power beamwidths, directivities, and SLLs comparable to those of other desirable array choices, such as Chebyshev arrays, with the same number of elements and interelement spacings. It is shown that, in fact, when the number of elements is sufficiently large, the array introduced here outperforms the Chebyshev array by providing larger directivity and allowing a smaller CTR to be achieved. Numerical results for broadside and endfire arrays are given.
机译:引入了一类可以不受限制地满足半功率波束宽度和旁瓣电平(SLL)设计要求的非均匀激发,等距线性阵列(ESLA)。这些阵列是使用均匀激发的阵列的图案作为构建基块构建的,因此很容易进行简单的分析描述和分析。提出了一种设计程序,该程序可用于确定所需的元素数量和激发电流,以实现指定的辐射特性。对于这些阵列,元件电流总是从阵列中心的最大值单调减小到边缘元件的最小值。当元素的数量很大时,可以利用此属性来限制当前的锥度比(CTR)。仿真结果表明,这些阵列可以提供与其他所需阵列选择(例如Chebyshev阵列)相比,具有相同数量的元素和元素间距的半功率波束宽度,方向性和SLL。结果表明,实际上,当元件数量足够多时,此处引入的阵列通过提供较大的方向性并允许实现较小的CTR而优于切比雪夫阵列。给出了宽边和端射阵列的数值结果。

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