JOURNAL ARTICLE

Joint interference minimizing and scheduling in underlay cognitive radio networks based on non-orthogonal opportunistic beamforming

Abstract

Cognitive radio holds tremendous promise for increasing spectral efficiency in wireless systems. In this paper, we consider an underlay cognitive radio system where a large number of secondary users (SUs) can share the spectrum with a primary user (PU). We assume that M antennas are used at the cognitive base station (CBS) and the CBS does not have the full channel state information (CSI) from users. We propose to study the problem of secondary users scheduling under the constraint of interference to the PU while maximizing the throughput of the secondary system. In order to reduce the amount of required feedback, our scheduling algorithm is based on opportunistic beamforming. It consists of two steps. In the first step, the cognitive base station constructs N matrices of (M-m) nonorthogonal beams, 0 ≤ m ≤ M - 1. The primary user selects the one which minimizes the interference to itself and sends the index of selected beamforming matrix to the CBS. In the second step, the (M-m) cognitive users having the highest signal to interference and noise ratios (SINRs) are selected for transmission, which can be done with little feedback. Simulation results show that our algorithm achieves a good tradeoff between interference to the PU and secondary system throughput.

Keywords:
Cognitive radio Beamforming Computer science Underlay Base station Scheduling (production processes) Spectral efficiency Channel state information Interference (communication) Cognitive network Computer network Wireless Signal-to-noise ratio (imaging) Telecommunications Channel (broadcasting) Mathematical optimization Mathematics

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Topics

Cognitive Radio Networks and Spectrum Sensing
Physical Sciences →  Computer Science →  Computer Networks and Communications
Advanced MIMO Systems Optimization
Physical Sciences →  Engineering →  Electrical and Electronic Engineering
Cooperative Communication and Network Coding
Physical Sciences →  Computer Science →  Computer Networks and Communications
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