An automatic pairing joint direction-of-arrival (DOA) and frequency estimation is presented to overcome the unsatisfactory performances of estimation of signal parameter via rotational invariance techniques- (ESPRIT-) like algorithm of Wang (2010), which requires an additional pairing. By using multiple-delay output of a uniform linear antenna arrays (ULA), the proposed algorithm can estimate joint angles and frequencies with an improved ESPRIT. Compared with Wang’s ESPRIT algorithm, the angle estimation performance of the proposed algorithm is greatly improved. The frequency estimation performance of the proposed algorithm is same with that of Wang’s ESPRIT algorithm. Furthermore, the proposed algorithm can obtain automatic pairing DOA and...
i In this thesis, we apply and analyze three direction of arrival algorithms (DoA) to tackle two dis...
A new technique is proposed for the solution of pairing problem which is observed when fast algorith...
Radio orbital angular momentum (OAM) communications require accurate alignment between the transmit ...
Multi-resolution ESPRIT is an extension of the ESPRIT direction finding algorithm to antenna arrays ...
In electronic warfare information about radio signals is gathered. Parameters as the direction-of-ar...
This paper presents a novel scheme for joint frequency and direction of arrival (DOA) estimation, th...
It has been proposed to jointly estimate the angles and delays of the paths in a multipath channel. ...
Pairing problem for the azimuth and elevation angles of multiple sources is an important problem in ...
In many practical signal processing applications, the objective is to estimate the direction-of-arri...
High-resolution parameter estimation techniques have recently been applied to jointly estimate multi...
This paper introduces a new algorithm, Derivative DFT Beamspace ESPRIT, that provides closed-form es...
High-resolution parameter estimation techniques have recently been applied to jointly estimate multi...
This paper introduces a new algorithm, Derivative DFT Beamspace ESPRIT, that provides closed-form es...
This paper introduces a new algorithm, Derivative DFT Beamspace ESPRIT, that provides closed-form es...
A structured least squares based ESPRIT method is devised for joint direction-of-arrival and frequen...
i In this thesis, we apply and analyze three direction of arrival algorithms (DoA) to tackle two dis...
A new technique is proposed for the solution of pairing problem which is observed when fast algorith...
Radio orbital angular momentum (OAM) communications require accurate alignment between the transmit ...
Multi-resolution ESPRIT is an extension of the ESPRIT direction finding algorithm to antenna arrays ...
In electronic warfare information about radio signals is gathered. Parameters as the direction-of-ar...
This paper presents a novel scheme for joint frequency and direction of arrival (DOA) estimation, th...
It has been proposed to jointly estimate the angles and delays of the paths in a multipath channel. ...
Pairing problem for the azimuth and elevation angles of multiple sources is an important problem in ...
In many practical signal processing applications, the objective is to estimate the direction-of-arri...
High-resolution parameter estimation techniques have recently been applied to jointly estimate multi...
This paper introduces a new algorithm, Derivative DFT Beamspace ESPRIT, that provides closed-form es...
High-resolution parameter estimation techniques have recently been applied to jointly estimate multi...
This paper introduces a new algorithm, Derivative DFT Beamspace ESPRIT, that provides closed-form es...
This paper introduces a new algorithm, Derivative DFT Beamspace ESPRIT, that provides closed-form es...
A structured least squares based ESPRIT method is devised for joint direction-of-arrival and frequen...
i In this thesis, we apply and analyze three direction of arrival algorithms (DoA) to tackle two dis...
A new technique is proposed for the solution of pairing problem which is observed when fast algorith...
Radio orbital angular momentum (OAM) communications require accurate alignment between the transmit ...