International audienceThis paper addresses the problem of soft equalization and detection of coded MIMO symbols transmitted over a frequency selective fading channel. We develop a low-complexity MMSE-based approach where both interference cancellation and computation of the soft information are performed in a successive fashion. Monte-Carlo simulations demonstrate attractive performance even under the presence of imprecise channel state information (CSI) at the receiver
Next generation Multiple Input Multiple Output (MIMO) communication systems should meet strict perfo...
This paper investigates iterative frequency domain techniques for the reception of spatially multipl...
Next generation Multiple Input Multiple Output (MIMO) communication systems should meet strict perfo...
International audienceThis paper addresses the issue of iterative space-time equalization for multip...
International audienceThis paper addresses the issue of iterative space-time equalization for multip...
International audienceThis paper addresses the issue of iterative space-time equalization for multip...
International audienceThis paper addresses the issue of iterative space-time equalization for multip...
International audienceThis paper addresses the issue of iterative space-time equalization for multip...
International audienceThis paper addresses the issue of iterative space-time equalization for multip...
International audienceThis paper addresses the issue of iterative space-time equalization for multip...
International audienceThis paper addresses the issue of iterative space-time equalization for multip...
International audienceThis paper focuses on the problem of turbo equalization for MIMO frequency sel...
International audienceIn this contribution we present a new family of soft equalizers for multiple i...
A reduced complexity version of the soft-interference cancelling MMSE turbo equalizer is proposed fo...
A computationally efficient space-time turbo equalization algorithm is derived for frequency-selecti...
Next generation Multiple Input Multiple Output (MIMO) communication systems should meet strict perfo...
This paper investigates iterative frequency domain techniques for the reception of spatially multipl...
Next generation Multiple Input Multiple Output (MIMO) communication systems should meet strict perfo...
International audienceThis paper addresses the issue of iterative space-time equalization for multip...
International audienceThis paper addresses the issue of iterative space-time equalization for multip...
International audienceThis paper addresses the issue of iterative space-time equalization for multip...
International audienceThis paper addresses the issue of iterative space-time equalization for multip...
International audienceThis paper addresses the issue of iterative space-time equalization for multip...
International audienceThis paper addresses the issue of iterative space-time equalization for multip...
International audienceThis paper addresses the issue of iterative space-time equalization for multip...
International audienceThis paper addresses the issue of iterative space-time equalization for multip...
International audienceThis paper focuses on the problem of turbo equalization for MIMO frequency sel...
International audienceIn this contribution we present a new family of soft equalizers for multiple i...
A reduced complexity version of the soft-interference cancelling MMSE turbo equalizer is proposed fo...
A computationally efficient space-time turbo equalization algorithm is derived for frequency-selecti...
Next generation Multiple Input Multiple Output (MIMO) communication systems should meet strict perfo...
This paper investigates iterative frequency domain techniques for the reception of spatially multipl...
Next generation Multiple Input Multiple Output (MIMO) communication systems should meet strict perfo...