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A novel unitary beamspace recursive least squares algorithm for fast adaptive beamforming

机译:快速自适应波束形成的一种新颖的单一波束空间递归最小二乘算法

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A novel unitary beamspace recursive least squares (UB-RLS) algorithm for fast adaptive beamforming is proposed in this paper. Firstly, a kind of random unitary transformation matrix is designed. Secondly, with these matrices, the feed signals are transformed into a low-dimensional space named the unitary beamspace (UB) and the computation complexity is accordingly decreased. Finally, the RLS algorithm is applied for the beamspace to realize adaptive beamforming and the whole processing is called the UB-RLS algorithm. As a result, a good signal of interest (SOI) extraction and interferences nulling performance is obtained. Simulation experiments show the merits of the proposed algorithm against the other two, the UB-LMS algorithm and the UB-MVDR algorithm.
机译:提出了一种新颖的单波束空间递归最小二乘算法(UB-RLS),用于快速自适应波束形成。首先,设计了一种随机unit变换矩阵。其次,利用这些矩阵,将馈送信号变换到称为单一波束空间(UB)的低维空间中,从而降低了计算复杂度。最后,将RLS算法应用于波束空间以实现自适应波束形成,整个处理过程称为UB-RLS算法。结果,获得了良好的目标信号(SOI)提取和干扰归零性能。仿真实验表明,该算法相对于UB-LMS算法和UB-MVDR算法两个优点。

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