A new method for optimum design of V-shaped arrays is presented for azimuth and elevation angle estimation simultaneously. The design criterion is based on the Cramer-Rao Bound (CRB) for joint estimation where the coupling effect between the azimuth and elevation direction of arrival (DOA) angles is taken into account. The design method finds an optimum angle between the linear sub-arrays of the V-array. The computation of the optimum angle is simple due to the monotonic characteristics of the best and worst performance levels of CRB. The proposed method can be used to obtain directional arrays with significantly better DOA performance compared to the circular arrays. Furthermore V-array angle can be chosen for isotropic angle performance w...
The performance of traditional direction of arrival (DOA) estimation algorithm based on uniform circ...
Abstract — In this paper, the MUSIC 2D-DOA estimation is estimated by splitting the angle into eleva...
27th Signal Processing and Communications Applications Conference, SIU 2019 -- 24 April 2019 through...
In this study, a new method for optimum design of uniform and non-uniform V-shaped arrays is present...
In this paper, isotropic and directional uniform and nonuniform V-shaped arrays are considered for a...
in this study, a new design method is proposed for V-shaped planar array geometry for two-dimensiona...
In this thesis, two-dimensional (2-D) direction-of-arrival (DOA) estimation problem is considered. U...
Abstract — A simple Cramer-Rao bound on the estimation, using an array of sensors, of the azimuth an...
We consider the use of arbitrary 3D arrays for direction-of-arrival (DOA) estimation, with the commo...
In this study, isotropic V-shaped uniform and nonuniform arrays are considered. An isotropic array h...
In this paper, an improved propagator method (PM) is proposed by using a two-parallel array consisti...
International audienceDirection of arrival (DOA) estimation of multiple sources using an antenna arr...
International audienceDirection of arrival (DOA) estimation of multiple sources using an antenna arr...
International audienceDirection of arrival (DOA) estimation of multiple sources using an antenna arr...
Elbir, Ahmet M./0000-0003-4060-3781WOS: 000511596000011This paper proposes a new sparse array geomet...
The performance of traditional direction of arrival (DOA) estimation algorithm based on uniform circ...
Abstract — In this paper, the MUSIC 2D-DOA estimation is estimated by splitting the angle into eleva...
27th Signal Processing and Communications Applications Conference, SIU 2019 -- 24 April 2019 through...
In this study, a new method for optimum design of uniform and non-uniform V-shaped arrays is present...
In this paper, isotropic and directional uniform and nonuniform V-shaped arrays are considered for a...
in this study, a new design method is proposed for V-shaped planar array geometry for two-dimensiona...
In this thesis, two-dimensional (2-D) direction-of-arrival (DOA) estimation problem is considered. U...
Abstract — A simple Cramer-Rao bound on the estimation, using an array of sensors, of the azimuth an...
We consider the use of arbitrary 3D arrays for direction-of-arrival (DOA) estimation, with the commo...
In this study, isotropic V-shaped uniform and nonuniform arrays are considered. An isotropic array h...
In this paper, an improved propagator method (PM) is proposed by using a two-parallel array consisti...
International audienceDirection of arrival (DOA) estimation of multiple sources using an antenna arr...
International audienceDirection of arrival (DOA) estimation of multiple sources using an antenna arr...
International audienceDirection of arrival (DOA) estimation of multiple sources using an antenna arr...
Elbir, Ahmet M./0000-0003-4060-3781WOS: 000511596000011This paper proposes a new sparse array geomet...
The performance of traditional direction of arrival (DOA) estimation algorithm based on uniform circ...
Abstract — In this paper, the MUSIC 2D-DOA estimation is estimated by splitting the angle into eleva...
27th Signal Processing and Communications Applications Conference, SIU 2019 -- 24 April 2019 through...