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Fast Analysis of Large Microstrip Patch Phased Arrays Using Generalized Forward Backward Method with DFT Based Acceleration Algorithm

机译:基于DFT加速算法的广义前向后方法快速分析大型微带斑片相控阵

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Irregularly contoured two-dimensional arrays consisting of finite number of probe-fed microstrip patches are investigated using a generalized forward backward method (GFBM) with discrete Fourier transform (DFT)-based acceleration algorithm. In this method, unknown current coefficients corresponding to a single patch are first solved by a conventional method-of-moments (MoM) procedure. The solution is then found through an iterative procedure, namely GFBM, where it sweeps the current computation element by element (each element corresponds to a microstrip patch). A similar approach was reported previously for linear arrays of elements with arbitrary cross-sections
机译:使用基于离散傅里叶变换(DFT)的加速算法的广义前向后方法(GFBM),研究了由有限数量的探针馈送微带斑片组成的不规则轮廓二维阵列。在这种方法中,首先通过常规的矩量法(MoM)程序求解与单个贴片相对应的未知电流系数。然后,通过迭代过程(即GFBM)找到解决方案,在该过程中,它逐元素扫描当前计算元素(每个元素对应一个微带斑块)。先前曾报道过类似的方法,用于具有任意横截面的元素的线性阵列

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