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A New Quadratic Matrix Inequality Approach to Robust Adaptive Beamforming for General-rank Signal Model

机译:一种新的二次矩阵不等式方法,用于一般秩信号模型的鲁棒自适应波束形成

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The worst-case robust adaptive beamforming problem for generalrank signal model is considered. This is a nonconvex problem, and an approximate version of it (by introducing a matrix decomposition on the presumed covariance matrix of the desired signal) has been studied in the literature. Herein the original robust adaptive beamforming problem is tackled. Resorting to the strong duality of a linear conic program, the robust beamforming problem is reformulated into a quadratic matrix inequality (QMI) problem. There is no general method for solving a QMI problem in the literature. Here- in, employing a linear matrix inequality (LMI) relaxation technique, the QMI problem is turned into a convex semidefinite programming problem. Due to the fact that there often is a positive gap between the QMI problem and its LMI relaxation, a deterministic approximate algorithm is proposed to solve the robust adaptive beamforming in the QMI form. Last but not the least, a sufficient optimality condition for the existence of an optimal solution for the QMI problem is derived. To validate our theoretical results, simulation examples are presented, which also demonstrate the improved performance of the new robust beamformer in terms of the output signal-to-interference-plus-noise ratio.
机译:考虑了用于GeneralRank信号模型的最坏情况的鲁棒自适应波束形成问题。这是一个非凸起的问题,并且在文献中已经研究了近似版本(通过在所需信号的假定协方差矩阵上引入矩阵分解)。这里解决了原始的鲁棒自适应波束形成问题。借助线性圆锥程序的强大二元性,强大的波束成形问题被重新重整为二次矩阵不等式(QMI)问题。没有一般方法来解决文献中的QMI问题。这里 - 使用线性矩阵不等式(LMI)松弛技术,QMI问题变成了凸形半纤维编程问题。由于QMI问题及其LMI弛豫之间经常存在正差,所以提出了一种确定性近似算法来解决QMI形式中的鲁棒自适应波束形成。最后但并非最不限的是,派生了对QMI问题的最佳解决方案存在的足够的最佳状态条件。为了验证我们的理论结果,提出了仿真示例,该模拟示例还在输出信号到干扰除噪声率方面展示了新的强大波束形成器的改进性能。

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