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Adaptive multiple-beamformers for reception of coherent signals with known directions in the presence of uncorrelated interferences

机译:自适应多波束形成器,用于在存在不相关干扰的情况下接收具有已知方向的相干信号

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Two novel adaptive multiple-beamformers for reception of coherent signals with known directions-of-arrival (DO As) in the presence of uncorrelated interferences are proposed. The first approach is a two-step solution as follows: estimate the amplitudes of all the coherent signals using a subspace method and then construct the linearly constrained minimum variance beamformer from the generalized array mainfold. The second approach applies multiple linear constraints determined from the DOAs of the coherent signals to develop a minimum variance beamformer, which can achieve efficient signal utilization. To cope with performance degradation due to sample covariance errors, DOA estimation errors and other array imperfections, the eigenstructure of the covariance matrix is exploited to improve the performance of the proposed approaches by constraining the weight vector in the signal subspace. Simulation results are presented which compare the performance of the proposed algorithms with that of the minimum mean square error approach.
机译:提出了两种新颖的自适应多波束形成器,用于在存在不相关干扰的情况下接收具有已知到达方向(DO As)的相干信号。第一种方法是分两步的解决方案,如下所示:使用子空间方法估计所有相干信号的幅度,然后从广义阵列主曲线构造线性约束的最小方差波束形成器。第二种方法应用从相干信号的DOA确定的多个线性约束来开发最小方差波束形成器,从而可以实现有效的信号利用。为了应对由于样本协方差误差,DOA估计误差和其他阵列缺陷而导致的性能下降,协方差矩阵的本征结构被用来通过限制信号子空间中的权向量来改善所提出方法的性能。仿真结果表明,所提算法的性能与最小均方误差方法的性能进行了比较。

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