The paper introduces a Vector Signal Reconstruction Sparse and Parametric Approach (VSRSPA) for Direction of Arrival (DOA) estimation using a single vector hydrophone. The key highlights are:
Traditional DOA estimation methods face challenges in complex environments with multi-source signals and noise interference when using single vector hydrophones.
The proposed VSRSPA method involves reconstructing the signal model of the single vector hydrophone to convert its covariance matrix into a Toeplitz structure, which is then optimized using the Sparse and Parametric Approach (SPA) algorithm.
Detailed simulation analysis confirms the superior performance of VSRSPA compared to conventional methods like MUSIC and MVDR, especially in terms of estimation accuracy and resolution probability under low signal-to-noise ratio (SNR) and multi-source conditions.
The VSRSPA algorithm effectively addresses the limitations of traditional DOA estimation techniques for single vector hydrophones, providing an efficient new method for underwater acoustic signal processing.
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