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Polarisation diversity of conformal arrays based on geometric algebra via convex optimisation

机译:基于几何代数凸优化的共形阵列极化分集

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摘要

A simple and general design procedure is presented for the polarisation diversity of arbitrary conformal arrays; this procedure is based on the mathematical framework of geometric algebra and can be solved optimally using convex optimisation. Aside from being simpler and more direct than other derivations in the literature, this derivation is also entirely general in that it expresses the transformations in terms of rotors in geometric algebra which can easily be formulated for any arbitrary conformal array geometry. Convex optimisation has a number of advantages; solvers are widespread and freely available, the process generally requires a small number of iterations and a wide variety of constraints can be readily incorporated. The study outlines a two-step approach for addressing polarisation diversity in arbitrary conformal arrays: first, the authors obtain the array polarisation patterns using geometric algebra and secondly use a convex optimisation approach to find the optimal weights for the polarisation diversity problem. The versatility of this approach is illustrated via simulations of a 7 ?? 10 cylindrical conformal array.
机译:为任意保形阵列的偏振分集提出了一种简单通用的设计程序。此过程基于几何代数的数学框架,可以使用凸优化来优化求解。除了比文献中的其他推导更简单和直接之外,该推导也完全具有通用性,因为它以几何代数表示转子的变换,可以轻松地将其公式化为任意保形阵列几何。凸优化具有许多优点;求解器是广泛的并且可以免费获得,该过程通常需要进行少量迭代,并且可以很容易地合并各种约束。该研究概述了解决任意保形阵列中极化分集的两步方法:首先,作者使用几何代数获得阵列极化图,其次使用凸优化方法来找到极化分集问题的最佳权重。这种方法的多功能性通过对7Ω的仿真来说明。 10个圆柱共形阵列。

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  • 来源
    《Radar, Sonar & Navigation, IET》 |2012年第6期|p.417-424|共8页
  • 作者

    Zou L.; Lasenby J.; He Z.;

  • 作者单位

    School of Electronic Engineering, University of Electronic Science and Technology of China, No. 2006, Xiyuan Road, High-Tech-Zone (West), Chengdu 611731, People's Republic of China;

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