Abstract — In this paper, a joint linear minimum sum mean-squared error transceiver optimization problem is formulated for multiuser MIMO uplink systems under a sum power constraint assuming imperfect channel state information (CSI). Two meth-ods are proposed to solve this problem. One is based on the associated Karush-Kuhn-Tucker conditions. The other is to solve an equivalent problem, approaching the solution by solving a sequence of semi-definite programming problems. After obtaining the solution to the optimization problem, we investigate the effects of channel estimation errors and antenna correlation at the base station on system performance. Simulation results are provided. I
This dissertation designs linear transceivers for the multiuser downlink in multiple-input multiple-...
This dissertation designs linear transceivers for the multiuser downlink in multiple-input multiple-...
Wireless communication links with multiple antennas at both the transmitter and the receiver sides, ...
Abstract — This paper addresses the joint transceiver design for downlink multiuser multiple-input m...
This correspondence addresses the joint transceiver design for downlink multiuser multiple-input mul...
This paper considers the problem of jointly designing the precoders for the downlink multiuser multi...
This paper addresses the mean square error (MSE) uplink/downlink duality for the multiple input mult...
In this paper, we consider robust joint linear precoder/receive filter design for multiuser multi-in...
Abstract — This paper presents a new result on minimum total mean squared error (MSE) joint transcei...
The performance of the uplink of multi-user multiple-input multiple-output (MU-MIMO) systems depends...
This paper presents new results on joint linear transceiver design under the minimum total mean-squa...
We address the problem of Mean Square Error (MSE) transceiver design for point-to-multipoint transmi...
Abstract—This paper presents new results on joint linear transceiver design under the minimum total ...
Abstract — This paper considers linear minimum mean-square-error (MMSE) transceiver design problems ...
This paper considers linear minimum mean-square-error (MMSE) transceiver design problems for downlin...
This dissertation designs linear transceivers for the multiuser downlink in multiple-input multiple-...
This dissertation designs linear transceivers for the multiuser downlink in multiple-input multiple-...
Wireless communication links with multiple antennas at both the transmitter and the receiver sides, ...
Abstract — This paper addresses the joint transceiver design for downlink multiuser multiple-input m...
This correspondence addresses the joint transceiver design for downlink multiuser multiple-input mul...
This paper considers the problem of jointly designing the precoders for the downlink multiuser multi...
This paper addresses the mean square error (MSE) uplink/downlink duality for the multiple input mult...
In this paper, we consider robust joint linear precoder/receive filter design for multiuser multi-in...
Abstract — This paper presents a new result on minimum total mean squared error (MSE) joint transcei...
The performance of the uplink of multi-user multiple-input multiple-output (MU-MIMO) systems depends...
This paper presents new results on joint linear transceiver design under the minimum total mean-squa...
We address the problem of Mean Square Error (MSE) transceiver design for point-to-multipoint transmi...
Abstract—This paper presents new results on joint linear transceiver design under the minimum total ...
Abstract — This paper considers linear minimum mean-square-error (MMSE) transceiver design problems ...
This paper considers linear minimum mean-square-error (MMSE) transceiver design problems for downlin...
This dissertation designs linear transceivers for the multiuser downlink in multiple-input multiple-...
This dissertation designs linear transceivers for the multiuser downlink in multiple-input multiple-...
Wireless communication links with multiple antennas at both the transmitter and the receiver sides, ...