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A Novel Digital Beamforming Technique based on Homogeneous Adaptation Employing Time-varying Convergence Factors

机译:一种基于采用时变收敛因子的均相适应的新型数字波束形成技术

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In this paper, a novel complex homogeneous adaptation least mean square algorithm (complex HA-LMS) for digital beamforming is presented. The proposed technique independently adjusts the real and imaginary components of the complex adaptive filter coefficients using optimally derived convergence factors. In addition, the convergence factors are updated at very sample iteration. The complex HA-LMS is applied to adaptive beamforming in a multi-antenna receiver processing Quadrature Amplitude Modulation (QAM) signals. Extensive simulation results show that the complex HA-LMS exhibits improved and consistent performance, in terms of the Symbol Error Rate (SER) and convergence speed, for different flat fading channel conditions and varied number of antenna elements, in contrast to the complex Least Mean Square algorithm (complex LMS) which uses a fixed convergence factor.
机译:本文介绍了一种用于数字波束形成的新型复杂的均匀自适应最低均方算法(复杂HA-LMS)。所提出的技术独立地使用最佳导出的收敛因子来调整复杂自适应滤波器系数的实际和虚部。此外,收敛因子在非常采样迭代时更新。复杂的HA-LMS应用于在多天线接收器处理正交调制(QAM)信号中的自适应波束形成。广泛的仿真结果表明,复杂的HA-LMS在符号误差率(SER)和收敛速度方面,对于不同的扁平衰落通道条件和变化数量的天线元件,与复杂最小平均值相比,复杂的HA-LMS表现出改进和一致的性能。使用固定收敛因子的方算法(复杂LMS)。

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