This paper presents a new method for estimating the direc-tions of source signals. We assume a situation in which multiple source signals are mixed in a reverberant condi-tion and observed at several sensors. The new method is based on independent component analysis, which separates mixed signals into original source signals. It can be ap-plied where the number of sources is equal to the number of sensors, whereas the conventional methods based on sub-space analysis, such as the MUSIC algorithm, are applica-ble where there are fewer sources than sensors. Even in cases where the MUSIC algorithm can be applied, the new method is better at estimating the directions of sources if they are closely placed. 1
Modern-day, global, and clever array systems have several distinguished approaches with regard to a ...
In this paper we investigate the application of complex independent component analysis (ICA) to the ...
Over the past decades there has been technological breakthrough from analog to digital. Ever since t...
This paper presents a new method for estimating the direc-tions of source signals. We assume a situa...
Direction of arrival estimation for multiple source signals using independent component analysi
A new DOA (direction of arrival) estimation method is pro-posed for 3D (three-dimensional) multiple ...
This paper presents an algorithm for the estimation of the direction of arrival (DOA) in underdeterm...
Multipath signal is often considered an interference that must be removed. The coherence between mul...
This paper proposes a method for direction of arrival (DOA) estimation which can be applied in case ...
A computationally efficient method is proposed for estimating the directions-of-arrival (DOAs) of si...
A computationally efficient method is proposed for estimating the directions-of-arrival (DOAs) of s...
Based on MUSIC-LIKE algorithm, an improved algorithm for multiple source direction of arrival estima...
Based on MUSIC-LIKE algorithm, an improved algorithm for multiple source direction of arrival estima...
Abstract: In this paper, we describe a new source separation method in which uses spatial informatio...
DoctorThis dissertation discusses a study on radar signal processing for accurate direction-of-arriv...
Modern-day, global, and clever array systems have several distinguished approaches with regard to a ...
In this paper we investigate the application of complex independent component analysis (ICA) to the ...
Over the past decades there has been technological breakthrough from analog to digital. Ever since t...
This paper presents a new method for estimating the direc-tions of source signals. We assume a situa...
Direction of arrival estimation for multiple source signals using independent component analysi
A new DOA (direction of arrival) estimation method is pro-posed for 3D (three-dimensional) multiple ...
This paper presents an algorithm for the estimation of the direction of arrival (DOA) in underdeterm...
Multipath signal is often considered an interference that must be removed. The coherence between mul...
This paper proposes a method for direction of arrival (DOA) estimation which can be applied in case ...
A computationally efficient method is proposed for estimating the directions-of-arrival (DOAs) of si...
A computationally efficient method is proposed for estimating the directions-of-arrival (DOAs) of s...
Based on MUSIC-LIKE algorithm, an improved algorithm for multiple source direction of arrival estima...
Based on MUSIC-LIKE algorithm, an improved algorithm for multiple source direction of arrival estima...
Abstract: In this paper, we describe a new source separation method in which uses spatial informatio...
DoctorThis dissertation discusses a study on radar signal processing for accurate direction-of-arriv...
Modern-day, global, and clever array systems have several distinguished approaches with regard to a ...
In this paper we investigate the application of complex independent component analysis (ICA) to the ...
Over the past decades there has been technological breakthrough from analog to digital. Ever since t...