Interference Alignment Schemes Using Latin Square for Kx3 MIMO X Channel

10/12/2018
by   Young-Sik Moon, et al.
0

In this paper, we study an interference alignment (IA) scheme with finite time extension and beamformer selection method with low computational complexity for X channel. An IA scheme with a chain structure by the Latin square is proposed for Kx3 multiple-input multiple-output (MIMO) X channel. Since the proposed scheme can have a larger set of possible beamformers than the conventional schemes, its performance is improved by the efficient beamformer selection for a given channel. Also, we propose a condition number (CN) based beamformer selection method with low computational complexity and its performance improvement is numerically verified.

READ FULL TEXT

page 1

page 2

page 3

page 4

research
04/19/2018

Joint MMSE Transceiver Design for Downlink Heterogeneous Network

In this paper, we propose a minimum mean square error (MMSE) based trans...
research
04/12/2021

Capacity-Driven Low-Interference Fast Beam Synthesis for Next Generation Base Stations

The problem of the real-time multiple-input multiple-output (MIMO) array...
research
09/30/2019

Groupwise Neighbor Examination for Tabu Search Detection in Large MIMO systems

In the conventional tabu search (TS) detection algorithm for multiple-in...
research
03/15/2022

Benchmarking and Interpreting End-to-end Learning of MIMO and Multi-User Communication

End-to-end autoencoder (AE) learning has the potential of exceeding the ...
research
08/03/2022

A Lightweight Transmission Parameter Selection Scheme Using Reinforcement Learning for LoRaWAN

The number of IoT devices is predicted to reach 125 billion by 2023. The...
research
06/24/2021

Retrospective Interference Regeneration Schemes for Relay-Aided K-user MIMO Broadcast Networks

As a novel method to increase channel capacity of networks, interference...
research
06/22/2021

Two New Kinds of Interference Alignment Schemes for Cellular K-user MIMO Downlink Networks

It is known that interference alignment (IA) plays an important role in ...

Please sign up or login with your details

Forgot password? Click here to reset