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首页> 外文期刊>International journal of antennas and propagation >Planar Thinned Arrays: Optimization and Subarray Based Adaptive Processing
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Planar Thinned Arrays: Optimization and Subarray Based Adaptive Processing

机译:平面稀疏阵列:基于优化和子阵列的自适应处理

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A new approach is presented for the optimized design of a planar thinned array; the proposed strategy works with single antenna elements or with small sets of different subarray types, properly located on a planar surface. The optimization approach is based on the maximization of an objective function accounting for side lobe level and considering a fixed number of active elements/subarrays. The proposed technique is suitable for different shapes of the desired output array, allowing the achievement of the desired directivity properties on the corresponding antenna pattern. The use of subarrays with a limited number of different shapes is relevant for industrial production, which would benefit from reduced design and manufacturing costs. The resulting modularity allows scalable antenna designs for different applications. Moreover, subarrays can be arranged in a set of subapertures, each connected to an independent receiving channel. Therefore, adaptive processing techniques could be applied to cope with and mitigate clutter echoes and external electromagnetic interferences. The performance of adaptive techniques with subapertures taken from the optimized thinned array is evaluated against assigned clutter and jamming scenarios and compared to the performance achievable considering a subarray based filled array with the same number of active elements.
机译:提出了一种新方法,用于平面变薄阵列的优化设计。建议的策略适用于单个天线元件或适当放置在平面上的少量不同子阵列类型的集合。优化方法基于考虑旁瓣水平并考虑固定数量的活动元素/子阵列的目标函数的最大化。所提出的技术适合于期望的输出阵列的不同形状,从而允许在相应的天线方向图上实现期望的方向性。具有有限数量的不同形状的子阵列的使用与工业生产有关,这将从降低的设计和制造成本中受益。最终的模块化允许针对不同应用的可扩展天线设计。此外,子阵列可以布置在一组子孔径中,每个子孔径连接到独立的接收通道。因此,可以应用自适应处理技术来应对和减轻杂波回波和外部电磁干扰。针对分配的杂波和干扰场景,评估了从优化的细化阵列中提取子孔径的自适应技术的性能,并将其与考虑具有相同数量有源元件的基于子阵列的填充阵列时可获得的性能进行比较。

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