The fundamental diversity-multiplexing tradeoff (DMT) of the quasi-static fading, MIMO Z interference channel (ZIC), with M1 and M2 antennas at the transmitters and N1 and N2 antennas at the corresponding receivers, respectively, is derived. Channel state information at the transmitters (CSIT) and a short-term average power constraint is assumed. The achievability of the DMT is proved by showing that a simple Gaussian superposition coding scheme can achieve a rate region which is within a constant (independent of signal-to-noise ratio (SNR)) number of bits from an upper bound to the capacity region of the ZIC. We also characterize an achievable DMT of the ZIC with No-CSIT and show that in a small region of multiplexing gains (MG), the full ...
It is known that neither the Alamouti nor the V-BLAST scheme achieves the Zheng-Tse diversity-multip...
Diversity embedded space time codes are high rate codes that are designed such that they have a high...
International audienceIn this paper, we investigate the diversity-multiplexing tradeoff (DMT) of the...
The fundamental diversity-multiplexing tradeoff (DMT) of the quasi-static fading, symmetric $2$-user...
Since the introduction of the Diversity-Multiplexing Trade-off (DMT) by Zheng and Tse for ML recepti...
Abstract—In this work the optimal diversity-multiplexing tradeoff (DMT) is studied for the multiple-...
Multiple antennas can be used for increasing the amount of diversity (diversity gain) or increasing ...
Multiple antennas can be used for increasing the packet reliability (spatial diversity) or the spect...
Multiple antennas can be used for increasing the packet reliability (spatial diversity) or the spect...
The optimal DMT (diversity and multiplexing tradeoff) of interference channel is still unknown. In t...
munications, the notion of asymmetric channel refers to the situation when the number of transmit an...
Multiple antennas can be used for increasing the amount of diversity (diversity gain) or increasing ...
It is well known that multiple-input multiple-output (MIMO) systems provide two types of gains: dive...
It is known that neither the Alamouti nor the V-BLAST scheme achieves the Zheng-Tse diversity-multip...
It is known that neither the Alamouti nor the V-BLAST scheme achieves the Zheng-Tse diversity-multip...
It is known that neither the Alamouti nor the V-BLAST scheme achieves the Zheng-Tse diversity-multip...
Diversity embedded space time codes are high rate codes that are designed such that they have a high...
International audienceIn this paper, we investigate the diversity-multiplexing tradeoff (DMT) of the...
The fundamental diversity-multiplexing tradeoff (DMT) of the quasi-static fading, symmetric $2$-user...
Since the introduction of the Diversity-Multiplexing Trade-off (DMT) by Zheng and Tse for ML recepti...
Abstract—In this work the optimal diversity-multiplexing tradeoff (DMT) is studied for the multiple-...
Multiple antennas can be used for increasing the amount of diversity (diversity gain) or increasing ...
Multiple antennas can be used for increasing the packet reliability (spatial diversity) or the spect...
Multiple antennas can be used for increasing the packet reliability (spatial diversity) or the spect...
The optimal DMT (diversity and multiplexing tradeoff) of interference channel is still unknown. In t...
munications, the notion of asymmetric channel refers to the situation when the number of transmit an...
Multiple antennas can be used for increasing the amount of diversity (diversity gain) or increasing ...
It is well known that multiple-input multiple-output (MIMO) systems provide two types of gains: dive...
It is known that neither the Alamouti nor the V-BLAST scheme achieves the Zheng-Tse diversity-multip...
It is known that neither the Alamouti nor the V-BLAST scheme achieves the Zheng-Tse diversity-multip...
It is known that neither the Alamouti nor the V-BLAST scheme achieves the Zheng-Tse diversity-multip...
Diversity embedded space time codes are high rate codes that are designed such that they have a high...
International audienceIn this paper, we investigate the diversity-multiplexing tradeoff (DMT) of the...