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Directions of arrival estimation with planar antenna arrays in the presence of mutual coupling
Authors:Salem Akkar  Ferid Harabi  Ali Gharsallah
Affiliation:1. Unit of Research in High Frequency Electronic Circuits and Systems, Faculty of Sciences of Tunis , El Manar , 2092, Tunisia salemakkar@yahoo.fr;3. Unit of Research in High Frequency Electronic Circuits and Systems, Faculty of Sciences of Tunis , El Manar , 2092, Tunisia
Abstract:Directions of arrival (DoAs) estimation of multiple sources using an antenna array is a challenging topic in wireless communication. The DoAs estimation accuracy depends not only on the selected technique and algorithm, but also on the geometrical configuration of the antenna array used during the estimation. In this article the robustness of common planar antenna arrays against unaccounted mutual coupling is examined and their DoAs estimation capabilities are compared and analysed through computer simulations using the well-known MUltiple SIgnal Classification (MUSIC) algorithm. Our analysis is based on an electromagnetic concept to calculate an approximation of the impedance matrices that define the mutual coupling matrix (MCM). Furthermore, a CRB analysis is presented and used as an asymptotic performance benchmark of the studied antenna arrays. The impact of the studied antenna arrays geometry on the MCM structure is also investigated. Simulation results show that the UCCA has more robustness against unaccounted mutual coupling and performs better results than both UCA and URA geometries. The performed simulations confirm also that, although the UCCA achieves better performance under complicated scenarios, the URA shows better asymptotic (CRB) behaviour which promises more accuracy on DoAs estimation.
Keywords:mutual coupling matrix (MCM)  planar arrays  DoAs estimation  MUSIC algorithm  CRB
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