This book discusses new, efficient and hardware realizable algorithms that can attain the performance of beyond 5G wireless communication. The authors explain topics gradually, stepping from basic MIMO detection to optimized schemes for both hard and soft domain MIMO detection and also to the feasible VLSI implementation, scalable to any MIMO configuration (including massive MIMO, used in satellite/space communication). The techniques described in this book enable readers to implement real designs, with reduced computational complexity and improved performance
The K-best detector is considered as a promising technique in the MIMO-OFDM detection because of its...
Multiple-Input-Multiple-Output (MIMO) technology makes use of multiple transmit and receive antennas...
K-best Schnorr-Euchner (KSE) decoding algorithm is proposed in this paper to approach near-maximum-l...
Energy efficiency is a primary design goal for future green wireless communication technologies. Mul...
Energy efficiency is a primary design goal for future green wireless communication technologies. Mul...
ABSTRACT This paper presents a VLSI implementation of reduced hardware-complexity and reconfigurable...
We describe the VLSI implementation of MIMO detectors that exhibit close-to optimum error-rate perfo...
Lattice decoding algorithms have been shown to have the similar performance as the optimal maximum l...
Multi-Input Multi-Output system has been one of the hot technologies for future wireless communicati...
In a MIMO communication system, K-best decoding algorithm achieves near optimal performance with red...
Abstract — In MIMO communication systems, K-best decoding algorithm achieves near optimal performanc...
Multiple Input Multiple Output (MIMO) technology is of great significance in high data rate wireless...
This paper considers advanced techniques for multiple-input multiple-output (MIMO) detection and dec...
In a MIMO communication system, K-best decoding algorithm achieves near optimal performance with red...
Multiple-Input Multiple-Output (MIMO) technique is a key technology to strengthen and achieve high-s...
The K-best detector is considered as a promising technique in the MIMO-OFDM detection because of its...
Multiple-Input-Multiple-Output (MIMO) technology makes use of multiple transmit and receive antennas...
K-best Schnorr-Euchner (KSE) decoding algorithm is proposed in this paper to approach near-maximum-l...
Energy efficiency is a primary design goal for future green wireless communication technologies. Mul...
Energy efficiency is a primary design goal for future green wireless communication technologies. Mul...
ABSTRACT This paper presents a VLSI implementation of reduced hardware-complexity and reconfigurable...
We describe the VLSI implementation of MIMO detectors that exhibit close-to optimum error-rate perfo...
Lattice decoding algorithms have been shown to have the similar performance as the optimal maximum l...
Multi-Input Multi-Output system has been one of the hot technologies for future wireless communicati...
In a MIMO communication system, K-best decoding algorithm achieves near optimal performance with red...
Abstract — In MIMO communication systems, K-best decoding algorithm achieves near optimal performanc...
Multiple Input Multiple Output (MIMO) technology is of great significance in high data rate wireless...
This paper considers advanced techniques for multiple-input multiple-output (MIMO) detection and dec...
In a MIMO communication system, K-best decoding algorithm achieves near optimal performance with red...
Multiple-Input Multiple-Output (MIMO) technique is a key technology to strengthen and achieve high-s...
The K-best detector is considered as a promising technique in the MIMO-OFDM detection because of its...
Multiple-Input-Multiple-Output (MIMO) technology makes use of multiple transmit and receive antennas...
K-best Schnorr-Euchner (KSE) decoding algorithm is proposed in this paper to approach near-maximum-l...