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Methods to design combining vectors at the receiver for multiantenna users in the multiuser multiple-input multiple-output downlink channel are presented. The proposed methods are applicable for linear and nonlinear precoding. A fast user ordering algorithm is provided to reduce computational complexity. Furthermore, an adaptive codebook for combining vectors is presented to decrease the precoding...
Fourth Generation Networks will invariably adopt MIMO-OFDMA techniques, in order to cope with increased data rate demands and improved Quality of Service (QoS) requirements. OFDMA is a popular multiple access candidate, since it facilitates multi-user diversity by enabling two dimensional multiple access, in time and frequency domains. Random Beamforming enables exploitation of spatial multi-user...
We address backward compatibility issues when developing new mobile communication systems, where older “legacy” users do not support features of the newer system. With multiuser MIMO vector perturbation precoding, all active users have to support modulo detection of the perturbed receive signal. Since legacy users cannot undo this nonlinear operation, they must be kept spatially separated from the...
A general framework for user selection in the broadcast channel with multiuser linear and nonlinear precoding techniques is investigated. Assuming full knowledge of channel-state information at the transmitter and using a minimum-mean-square-error (MMSE) criterion, we propose several user-selection algorithms based on the conventional incremental and decremental search approaches. Furthermore, a novel...
User selection for multiuser linear precoding in broadcast channel is investigated in this paper. Assuming complete knowledge of channel state information at the transmitter, new user selection algorithms are introduced using minimum mean square error criterion. A novel iterative user selection is proposed offering a flexible performance-complexity tradeoff. New algorithms are also developed for orthogonal...
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