In this paper we consider the design of minimum mean square error (MMSE) transceivers for non-regenerative multiple input multiple output (MIMO) relay systems. Our design utilises Tomlinson Harashima precoding (THP) at the source along with linear processors in each stage of the network. Assuming full channel state information (CSI) is available at each node in the network the various processors are jointly optimised to minimise the system arithmetic mean square error (MSE) whilst abiding by average power constraints at both the source and relay terminals in the network. Simulations show that the proposed schemes outperform existing methods in terms of bit error ratio (BER)
Abstract—Transceiver designs have been a key issue in guaranteeing the performance of multiple-input...
Recently, multiple-input multiple-output (MIMO) relay technique has been received great attention du...
In this paper, we consider a robust design of MIMO-relay precoder and receive filter for the destina...
In this paper we consider the design of minimum mean square error (MMSE) transceivers for non-regene...
In this paper we consider a robust transceiver design for two hop non-regenerative multiple-input mu...
In this paper we consider the design of zero forcing (ZF) and minimum mean square error (MMSE) trans...
Abstract — In this paper, the problem of transceiver design in a non-regenerative MIMO relay system ...
In this paper, we investigate the performance of the Tomlinson-Harashima (TH) precoder based nonline...
In this paper, the problem of transceiver design in a non-regenerative MIMO relay system is addresse...
Abstract — In this paper, as a extended structure of the existing relay-destination joint minimum me...
In this letter we consider Tomlinson Harashima precoding (THP) for multiple-input multiple-output (M...
Abstract — In this paper, the problem of transceiver design in a non-regenerative MIMO relay system ...
The maximum signal-to-interference plus noise ratio (MSINR) design criterion is proposed in this pap...
Abstract Multiple-input multiple-output (MIMO) relaying system has attracted the attention of cooper...
In this paper, the problem of transceiver design in a non-regenerative MIMO relay system is addresse...
Abstract—Transceiver designs have been a key issue in guaranteeing the performance of multiple-input...
Recently, multiple-input multiple-output (MIMO) relay technique has been received great attention du...
In this paper, we consider a robust design of MIMO-relay precoder and receive filter for the destina...
In this paper we consider the design of minimum mean square error (MMSE) transceivers for non-regene...
In this paper we consider a robust transceiver design for two hop non-regenerative multiple-input mu...
In this paper we consider the design of zero forcing (ZF) and minimum mean square error (MMSE) trans...
Abstract — In this paper, the problem of transceiver design in a non-regenerative MIMO relay system ...
In this paper, we investigate the performance of the Tomlinson-Harashima (TH) precoder based nonline...
In this paper, the problem of transceiver design in a non-regenerative MIMO relay system is addresse...
Abstract — In this paper, as a extended structure of the existing relay-destination joint minimum me...
In this letter we consider Tomlinson Harashima precoding (THP) for multiple-input multiple-output (M...
Abstract — In this paper, the problem of transceiver design in a non-regenerative MIMO relay system ...
The maximum signal-to-interference plus noise ratio (MSINR) design criterion is proposed in this pap...
Abstract Multiple-input multiple-output (MIMO) relaying system has attracted the attention of cooper...
In this paper, the problem of transceiver design in a non-regenerative MIMO relay system is addresse...
Abstract—Transceiver designs have been a key issue in guaranteeing the performance of multiple-input...
Recently, multiple-input multiple-output (MIMO) relay technique has been received great attention du...
In this paper, we consider a robust design of MIMO-relay precoder and receive filter for the destina...