the performance of standard Capon beamforming will be severely degraded.In this paper
in the view of the constraints on the weight vector and the uncertainty sets
we propose a new approach
which is called Vector Optimization Robust Beamforming.It is shown that the proposed algorithm can be reformulated in a convex form as the so-called Second-Order Cone (SOC) program and solved efficiently using the well-established optimization tool
sedumi.Furthermore
this paper gives the approximate analytical expression for the adaptive weight vector
and reveals the main factors influencing the weight vector.Through the theory analysis and computer simulations
the influences of the constraint parameters
Signal Noise Ratio
snapshots
and bearing estimation errors on the output Signal Interference Noise Ratio and the spatial spectrum estimation are discussed in detail.Finally
the experimental results show that the robust high-resolution bearing estimation results can be obtained by our proposed method in practice.