We propose an improved minimum mean square error (MMSE) vertical Bell Labs layered space-time (V-BLAST) detection technique, called a soft input, soft output, and soft feedback (SIOF) V-BLAST detector, for turbo multi-input multioutput (Turbo-MIMO) systems. We derive a symbol estimator by minimizing the power of the interference plus noise, given a priori probabilities of undetected layer symbols and a posteriori probabilities for past detected layer symbols. For a low-complexity implementation, an approximate SIOF algorithm is presented, which allows for a time-invariant realization of the symbol ordering and an MMSE filtering process. Another implementation, referred to as the iterative SIOF algorithm is introduced, which decides on symbo...
Multiple-input multiple-output (MIMO) wireless communication systems have attracted a lot of interes...
Multiple Input Multiple Output (MIMO) channels can offer high capacity to wireless systems and the c...
In the paper we develop and evaluate a novel low complexity algorithm of iterative detection and dec...
Turbo-coded Vertical Bell Labs Layered Space-Time Architecture (V-BLAST) is a multiple-antenna syste...
A computationally efficient space-time turbo equalization algorithm is derived for frequency selecti...
The V-BLAST (Vertically - layered Bell Laboratories Layered Space-Time) algorithm is a multilayer sy...
This letter presents a new layered symbol detection algorithm for multiple-input multiple-output (MI...
A computationally efficient space-time turbo equalization algorithm is derived for frequency-selecti...
International audienceThis paper addresses the issue of iterative space-time equalization for multip...
Wireless communication using Multiple Input Multiple Output (MIMO) systems increases efficiency for ...
Abstract — We present an improved algorithm for detection of the received signal of a convolutionall...
Next generation Multiple Input Multiple Output (MIMO) communication systems should meet strict perfo...
We propose a new class of soft-input soft-output demodulation schemes for multiple-input multiple-ou...
In the paper we develop and evaluate a novel low complexity algorithm of iterative detection and dec...
Turbo BLAST(Bell LAb’s Layered Space Time) [1] detec-tion and decoding has demonstrated promising pe...
Multiple-input multiple-output (MIMO) wireless communication systems have attracted a lot of interes...
Multiple Input Multiple Output (MIMO) channels can offer high capacity to wireless systems and the c...
In the paper we develop and evaluate a novel low complexity algorithm of iterative detection and dec...
Turbo-coded Vertical Bell Labs Layered Space-Time Architecture (V-BLAST) is a multiple-antenna syste...
A computationally efficient space-time turbo equalization algorithm is derived for frequency selecti...
The V-BLAST (Vertically - layered Bell Laboratories Layered Space-Time) algorithm is a multilayer sy...
This letter presents a new layered symbol detection algorithm for multiple-input multiple-output (MI...
A computationally efficient space-time turbo equalization algorithm is derived for frequency-selecti...
International audienceThis paper addresses the issue of iterative space-time equalization for multip...
Wireless communication using Multiple Input Multiple Output (MIMO) systems increases efficiency for ...
Abstract — We present an improved algorithm for detection of the received signal of a convolutionall...
Next generation Multiple Input Multiple Output (MIMO) communication systems should meet strict perfo...
We propose a new class of soft-input soft-output demodulation schemes for multiple-input multiple-ou...
In the paper we develop and evaluate a novel low complexity algorithm of iterative detection and dec...
Turbo BLAST(Bell LAb’s Layered Space Time) [1] detec-tion and decoding has demonstrated promising pe...
Multiple-input multiple-output (MIMO) wireless communication systems have attracted a lot of interes...
Multiple Input Multiple Output (MIMO) channels can offer high capacity to wireless systems and the c...
In the paper we develop and evaluate a novel low complexity algorithm of iterative detection and dec...