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A pattern synthesis approach in four-dimensional antenna arrays with practical element models

机译:具有实际单元模型的四维天线阵列的方向图综合方法

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This paper introduces a novel approach for the synthesis of array patterns in four-dimensional (4-D) antenna arrays, taking into account practical element models. The approach is based on the combination of the differential evolution (DE) algorithm and full-wave simulation software HFSS. The DE algorithm is used to optimize the time sequences and static phase excitations, and then the equivalent amplitude and phase excitations are transferred to HFSS automatically by an interface program. The patterns at the center frequency and sideband frequencies are all obtained through full-wave simulation of practical antenna arrays in HFSS, thus many non-ideal effects such as mutual coupling can be taken into account. Numerical simulation results for the synthesis of low sidelobe sum-difference patterns in a 16-element printed dipole linear array and a 16-element microstrip patch conformal array are presented to demonstrate the effectiveness of the proposed approach.
机译:本文介绍了一种新颖的方法,在考虑到实际的元素模型的情况下,可以合成四维(4-D)天线阵列中的阵列方向图。该方法基于差分演化(DE)算法和全波仿真软件HFSS的组合。 DE算法用于优化时间序列和静态相位激励,然后等效的幅度和相位激励通过接口程序自动传输到HFSS。中心频率和边带频率的方向图都是通过HFSS中实际天线阵列的全波仿真获得的,因此可以考虑许多非理想的影响,例如相互耦合。提出了在16元素印刷偶极子线性阵列和16元素微带斑贴形共形阵列中合成低旁瓣和差模式的数值模拟结果,以证明该方法的有效性。

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