Cellular Multi-User Two-Way MIMO AF Relaying via Signal Space Alignment: Minimum Weighted SINR Maximization
arXiv:1205.2828 · doi:10.1109/TSP.2012.2201151
Abstract
In this paper, we consider linear MIMO transceiver design for a cellular two-way amplify-and-forward relaying system consisting of a single multi-antenna base station, a single multi-antenna relay station, and multiple multi-antenna mobile stations (MSs). Due to the two-way transmission, the MSs could suffer from tremendous multi-user interference. We apply an interference management model exploiting signal space alignment and propose a transceiver design algorithm, which allows for alleviating the loss in spectral efficiency due to half-duplex operation and providing flexible performance optimization accounting for each user's quality of service priorities. Numerical comparisons to conventional two-way relaying schemes based on bidirectional channel inversion and spatial division multiple access-only processing show that the proposed scheme achieves superior error rate and average data rate performance.
References in corpus (1)
Cited by in corpus (5)
- Towards the Asymptotic Sum Capacity of the MIMO Cellular Two-Way Relay Channel
- Cellular Multi-User Two-Way MIMO AF Relaying via Signal Space Alignment: Minimum Weighted SINR Maximization
- An Overview on Multiway Relay Communications: Fundamental Issues, Recent Advances, and New Challenges
- Spectral Efficiency of the Cellular Two-Way Relaying with Large Antenna Arrays
- Opportunistic Multiuser Two-Way Amplify-and-Forward Relaying with a Multi Antenna Relay