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Synthesis of Conformal Phased Antenna Arrays With A Novel Multiobjective Invasive Weed Optimization Algorithm

机译:新型多目标侵入杂草优化算法合成共形相控阵天线

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摘要

By virtue of the excellent aerodynamic performances, conformal phased arrays have been attracting considerable attention. However, for the synthesis of patterns with low/ultra-low sidelobes of the conventional conformal arrays, the obtained dynamic range ratios of amplitude excitations could be quite high, which results in stringent requirements on various error tolerances for practical implementation. Time-modulated array (TMA) has the advantages of low sidelobe and reduced dynamic range ratio requirement of amplitude excitations. This paper takes full advantages of conformal antenna arrays and time-modulated arrays. The active-element-pattern, including element mutual coupling and platform effects, is employed in the whole design process. To optimize the pulse durations and the switch-on instants of the time-modulated elements, multiobjective invasive weed optimization (MOIWO) algorithm based on the nondominated sorting of the solutions is proposed. A S-band 8-element cylindrical conformal array is designed and a S-band 16-element cylindrical-parabolic conformal array is constructed and tested at two different steering angles.
机译:凭借出色的空气动力学性能,共形相控阵已引起了广泛的关注。然而,对于常规共形阵列的具有低/超低旁瓣的图案的合成,获得的幅度激励的动态范围比可能非常高,这导致对于实际实现的各种误差容限有严格的要求。时间调制阵列(TMA)具有旁瓣低和幅度激励的动态范围比要求降低的优点。本文充分利用了共形天线阵列和时间调制阵列的优势。在整个设计过程中采用了主动元素模式,包括元素相互耦合和平台效应。为了优化时间调制元件的脉冲持续时间和接通时间,提出了基于非支配排序的多目标入侵杂草优化算法。设计了一个S波段8元素圆柱保形阵列,并构造了S波段16元素圆柱抛物线保形阵列,并在两个不同的转向角下对其进行了测试。

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