We focus on imperfect channel state information (ICSI) in closed-loop multiple-input multiple-output (MIMO) amplify-and-forward (AF) relaying systems. First, near-optimal closed-form solutions for transceiver designs are provided for the source-to-relay-to-destination link with ICSI at all nodes. Next, considering a nonnegligible direct link with ICSI available only at the relay and destination and no CSI or ICSI at the source, near-optimal designs are proposed. The Wiener or minimum mean square error (MMSE) filter is employed at the destination to estimate the transmitted signal. The effect of CSI mismatch on the performance of the proposed scheme is then shown through simulations
This paper presents new results on joint linear transceiver design under the minimum total mean-squa...
In this paper, we consider robust joint designs of relay precoder and destination receive filters in...
In this paper, we study the transceiver design for two-hop amplify-and-forward (AF) multiple-input m...
Abstract—In this paper, we propose statistically robust design for multiple-input multiple-output (M...
In this paper, we propose statistically robust design for multiuser multiple-input multiple-output (...
Abstract—Transceiver designs have been a key issue in guaranteeing the performance of multiple-input...
The problem of designing multiple-input-multiple-output (MIMO) relay for multipoint to multipoint co...
In this paper, we propose statistically robust design for multiple-input multiple-output (MIMO) rela...
Abstract—In this paper, we investigate the robust transceiver design for dual-hop amplify-and-forwar...
Abstract — In this paper, as a extended structure of the existing relay-destination joint minimum me...
In this paper, we consider a non-regenerative MIMO two-way relay system with imperfect channel state...
In this article, the transceiver design optimization problem is investigated for multi-hop multicast...
In this paper we consider a robust transceiver design for two hop non-regenerative multiple-input mu...
Abstract — This paper presents a new result on minimum total mean squared error (MSE) joint transcei...
In this paper, we consider robust joint designs of relay precoder and destination receive filters in...
This paper presents new results on joint linear transceiver design under the minimum total mean-squa...
In this paper, we consider robust joint designs of relay precoder and destination receive filters in...
In this paper, we study the transceiver design for two-hop amplify-and-forward (AF) multiple-input m...
Abstract—In this paper, we propose statistically robust design for multiple-input multiple-output (M...
In this paper, we propose statistically robust design for multiuser multiple-input multiple-output (...
Abstract—Transceiver designs have been a key issue in guaranteeing the performance of multiple-input...
The problem of designing multiple-input-multiple-output (MIMO) relay for multipoint to multipoint co...
In this paper, we propose statistically robust design for multiple-input multiple-output (MIMO) rela...
Abstract—In this paper, we investigate the robust transceiver design for dual-hop amplify-and-forwar...
Abstract — In this paper, as a extended structure of the existing relay-destination joint minimum me...
In this paper, we consider a non-regenerative MIMO two-way relay system with imperfect channel state...
In this article, the transceiver design optimization problem is investigated for multi-hop multicast...
In this paper we consider a robust transceiver design for two hop non-regenerative multiple-input mu...
Abstract — This paper presents a new result on minimum total mean squared error (MSE) joint transcei...
In this paper, we consider robust joint designs of relay precoder and destination receive filters in...
This paper presents new results on joint linear transceiver design under the minimum total mean-squa...
In this paper, we consider robust joint designs of relay precoder and destination receive filters in...
In this paper, we study the transceiver design for two-hop amplify-and-forward (AF) multiple-input m...