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首页> 外文期刊>IEEE Transactions on Antennas and Propagation >Fast Evaluation of the Radiation Patterns of True Time Delay Arrays With Beam Steering
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Fast Evaluation of the Radiation Patterns of True Time Delay Arrays With Beam Steering

机译:带波束控制的真实时滞阵列辐射方向图的快速评估

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A multilevel algorithm for the computation of the transient radiation patterns of true time delay (TTD) conformal arrays over a range of observation and beam steering directions is presented. The multilevel algorithm is based on hierarchical decomposition of the array into smaller sub-arrays of elements. At the finest level of decomposition, the angular-temporal radiation patterns of single-element sub-arrays are obtained over a sparse angular grid of directions and short temporal duration, by either measurement or calculation. Subsequent steps of the algorithm comprise multilevel aggregation of delayed sub-array contributions. This process continues until the transient radiation pattern of the whole array is obtained. At each level, the radiation pattern is interpolated to a finer angular grid of observations and steering directions followed by temporal delay compensation. The multilevel array decomposition algorithm attains a computational complexity substantially lower than that of the direct evaluation. Furthermore, the algorithm is particularly efficient for large arrays with large numbers of elements.
机译:提出了一种用于在一定范围的观察方向和光束转向方向上计算真实时间延迟(TTD)保形阵列的瞬态辐射方向图的多级算法。多级算法基于将数组分层分解为较小的元素子数组。在最好的分解水平上,通过测量或计算,可以在方向和短时间持续时间的稀疏角度网格上获得单元素子阵列的角-时间辐射方向图。该算法的后续步骤包括延迟子阵列贡献的多级聚合。这个过程一直持续到获得整个阵列的瞬态辐射图为止。在每个级别上,将辐射方向图内插到观察和转向方向的更精细的角度网格中,然后进行时间延迟补偿。该多级阵列分解算法获得的计算复杂度大大低于直接评估的计算复杂度。此外,该算法对于具有大量元素的大型阵列特别有效。

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