THE PROTOTYPE CO-PRIME ARRAY WITH A ROBUST DIFFERENCE CO-ARRAY
Ahmed M. A. Shaalan, Jun Du
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In this paper, we present a new sparse co-prime array design that achieves a higher number of degrees-of-freedom for direction-of-arrival (DOA) estimation. The proposed array design adopts a sequence of displacements applied in a systematic procedure to the sensors of one of the two constituent sub-arrays of the prototype co-prime array. Accordingly, the applied displacements completely eliminate the redundant virtual sensors between the two sub-arrays and at the same time considerably increase their number of uniform DOFs. Moreover, with no cross-sensor redundancies, the new design is of ideal first weight functions, and hence, it resolves sources more robustly than other co-prime array designs in the presence of mutual coupling. Simulation results demonstrate the superior performance of the proposed co-prime structure.