Lattice-reduction-aided detection (LRAD) has been shown to considerably increase the performance of linear multiple-input multiple-output (MIMO) detection systems. In previous work, we introduced adaptive lattice reduction as a way to exploit channel correlation to yield lattice reduction-based detectors exhibiting considerably reduced complexity. In this paper, we review adaptive lattice reduction and examine the performance and complexity of this detection scheme in both temporally and frequency fading channels. For typical mobile environments, for example, we demonstrate a complexity reduction approaching 33% on a 4times4 system, without compromising performance
MIMO (Multiple Transmit and Multiple Receive) antenna techniques are widely used in the most recent ...
[[abstract]]In recent years, lattice-reduction-aided (LRA) MIMO detection attracts much research att...
Abstract—Lattice reduction (LR) aided detection algorithms are known to achieve the same diversity o...
In multiple-input multiple-output (MIMO) systems, the use of lattice reduction methods sig-nificantl...
Abstract Recently the use of lattice-reduction for signal detection in multiple antenna systems has...
Abstract — Recently the use of lattice reduction (LR) methods for data detection in multiple-input m...
Two independent but equally challenging problems in the wireless communication systems are considere...
Lattice reduction (LR) aided detection algorithms are known to achieve the same diversity order as t...
MIMO,the core technology of next generation wireless broadband communication,is faced with the contr...
Lattice reduction (LR) aided detection algorithms are known to achieve the same diversity order as t...
In multiple-input multiple-output (MIMO) systems, the use of lattice reduction methods such as the o...
Recently, lattice- reduction-aided detectors have been proposed for multiinput multioutput (MIMO) sy...
Multiple-input multiple-output (MIMO) systems can increase the spectral efficiency in wireless commu...
[[abstract]]In this paper, we propose a low-complexity constant-throughput LLL algorithm for lattice...
AbstractMany powerful data detection algorithms employed in multiple-input multiple-output (MIMO) co...
MIMO (Multiple Transmit and Multiple Receive) antenna techniques are widely used in the most recent ...
[[abstract]]In recent years, lattice-reduction-aided (LRA) MIMO detection attracts much research att...
Abstract—Lattice reduction (LR) aided detection algorithms are known to achieve the same diversity o...
In multiple-input multiple-output (MIMO) systems, the use of lattice reduction methods sig-nificantl...
Abstract Recently the use of lattice-reduction for signal detection in multiple antenna systems has...
Abstract — Recently the use of lattice reduction (LR) methods for data detection in multiple-input m...
Two independent but equally challenging problems in the wireless communication systems are considere...
Lattice reduction (LR) aided detection algorithms are known to achieve the same diversity order as t...
MIMO,the core technology of next generation wireless broadband communication,is faced with the contr...
Lattice reduction (LR) aided detection algorithms are known to achieve the same diversity order as t...
In multiple-input multiple-output (MIMO) systems, the use of lattice reduction methods such as the o...
Recently, lattice- reduction-aided detectors have been proposed for multiinput multioutput (MIMO) sy...
Multiple-input multiple-output (MIMO) systems can increase the spectral efficiency in wireless commu...
[[abstract]]In this paper, we propose a low-complexity constant-throughput LLL algorithm for lattice...
AbstractMany powerful data detection algorithms employed in multiple-input multiple-output (MIMO) co...
MIMO (Multiple Transmit and Multiple Receive) antenna techniques are widely used in the most recent ...
[[abstract]]In recent years, lattice-reduction-aided (LRA) MIMO detection attracts much research att...
Abstract—Lattice reduction (LR) aided detection algorithms are known to achieve the same diversity o...