For single-carrier systems with frequency domain equalization, decision feedback equalization (DFE) performs better than linear equalization and has much lower computational complexity than sequence maximum likelihood detection. The main challenge in DFE is the feedback symbol selection rule. In this paper, we give a theoretical framework for a simple, sparsity based thresholding algorithm. We feed back multiple symbols in each iteration, so the algorithm converges fast and has a low computational cost. We show how the initial solution can be obtained via convex relaxation instead of linear equalization, and illustrate the impact that the choice of the initial solution has on th...
In this paper, we develop soft decision equalization (SDE) techniques for frequency selective multip...
Decision Feedback equalizers (DFEs) usually outperform linear equalizers for channels with intersymb...
In this paper, we show that, for an uncoded receiver system, the proposed least mean square (LMS) de...
For single-carrier systems with frequency domain equalization, decision feedback equalizati...
Abstract—For single-carrier systems with frequency domain equalization, decision feedback equalizati...
Two modified decision feedback equalizers (DFE) structures are developed for efficient equalization ...
To effectively suppress intersymbol interference (ISI) at low complexity, in this paper, we propose ...
Decision Feedback Equalization (DFE) is a form of non-linear symbol-by-symbol equalization in which...
Decision feedback equalization (DFE) is a well-established intersymbol interference mitigating techn...
For wireless applications, the computational complexity of the filter design is an important drawbac...
In this paper, it is demonstrated that decision feedback equalization (DFE) based on soft-decisions ...
Multiple-input multiple-out (MIMO) technology is a very promising technology in the future high spec...
[[abstract]]We propose new adaptive minimum symbol error rate algorithms (MSER) for decision feedbac...
: Design equations are presented for a robust realizable decision feedback equalizer, for FIR channe...
In this paper a new ecient Decision Feedback Equal-izer (DFE) is proposed. The new technique is appr...
In this paper, we develop soft decision equalization (SDE) techniques for frequency selective multip...
Decision Feedback equalizers (DFEs) usually outperform linear equalizers for channels with intersymb...
In this paper, we show that, for an uncoded receiver system, the proposed least mean square (LMS) de...
For single-carrier systems with frequency domain equalization, decision feedback equalizati...
Abstract—For single-carrier systems with frequency domain equalization, decision feedback equalizati...
Two modified decision feedback equalizers (DFE) structures are developed for efficient equalization ...
To effectively suppress intersymbol interference (ISI) at low complexity, in this paper, we propose ...
Decision Feedback Equalization (DFE) is a form of non-linear symbol-by-symbol equalization in which...
Decision feedback equalization (DFE) is a well-established intersymbol interference mitigating techn...
For wireless applications, the computational complexity of the filter design is an important drawbac...
In this paper, it is demonstrated that decision feedback equalization (DFE) based on soft-decisions ...
Multiple-input multiple-out (MIMO) technology is a very promising technology in the future high spec...
[[abstract]]We propose new adaptive minimum symbol error rate algorithms (MSER) for decision feedbac...
: Design equations are presented for a robust realizable decision feedback equalizer, for FIR channe...
In this paper a new ecient Decision Feedback Equal-izer (DFE) is proposed. The new technique is appr...
In this paper, we develop soft decision equalization (SDE) techniques for frequency selective multip...
Decision Feedback equalizers (DFEs) usually outperform linear equalizers for channels with intersymb...
In this paper, we show that, for an uncoded receiver system, the proposed least mean square (LMS) de...