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首页> 外文期刊>IEEE Transactions on Aerospace and Electronic Systems >A Fast Algorithm to Solve Delay Vandermonde Systems in Phased-Array Digital Receivers
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A Fast Algorithm to Solve Delay Vandermonde Systems in Phased-Array Digital Receivers

机译:一种快速算法解决相控阵数字接收器中的延迟沃德美德系统

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Phased-array multibeam RF beamformers require calibration of receivers used in an array of elements before the signals can be applied to an analog beamforming network. This article presents a fast O(n(2)) algorithm for solving linear systems having a delay Vandermonde matrix (DVM) for the analog beamforming matrix. The structure of the DVM enables to obtain a fast algorithm to efficiently reverse multibeams at the DVM output such that calibration of the input low noise amplifiers can be achieved. The arithmetic complexity of the proposed DVM system solving algorithm is preferable over the standard matrix inversion consuming O(n(3)) operations. Numerical experiments are presented for forward accuracy of the proposed algorithm computed at the calibration frequency. Moreover, numerical results are shown to compare the order of the arithmetic complexity and the execution time of the proposed algorithm. Signal flow graphs are presented for four- and eight-element multibeam phased arrays.
机译:相位阵列多束RF波束形成器需要在信号可以应用于模拟波束形成网络之前的元件阵列中使用的接收器的校准。 本文介绍了一种快速O(n(2))算法,用于求解具有用于模拟波束形成矩阵的延迟Vandermonde矩阵(DVM)的线性系统。 DVM的结构使得能够获得快速算法,以便在DVM输出处有效地反转多波束,使得可以实现输入的低噪声放大器的校准。 所提出的DVM系统求解算法的算术复杂性是优选的,在标准矩阵反转o(n(3))操作上是优选的。 呈现数值实验,用于以校准频率计算的所提出的算法的前向精度。 此外,示出了数值结果来比较算术复杂性的顺序和所提出的算法的执行时间。 信号流图显示为四个和八元多次相控阵列。

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