Affiliation:
1. School of Electrical Engineering, University of Belgrade, 11000 Belgrade, Serbia
2. Faculty of Mechanical Engineering, University of Nis, 18000 Nis, Serbia
Abstract
The relentless expansion of communications services and applications in 5G networks and their further projected growth bring the challenge of necessary spectrum scarcity, a challenge which might be overcome using the concept of cognitive radio. Furthermore, an extremely high number of low-power devices are introduced by the concept of the Internet of Things (IoT), which also requires efficient energy usage and practically applicable device powering. Motivated by these facts, in this paper, we analyze a wirelessly powered underlay cognitive system based on a realistic case in which statistical channel state information (CSI) is available. In the system considered, the primary and the cognitive networks share the same spectrum band under the constraint of an interference threshold and a maximal tolerable outage permitted by the primary user. To adopt the system model in realistic IoT application scenarios in which network nodes are mobile, we consider the randomly moving cognitive user receiver. For the analyzed system, we derive the closed-form expressions for the outage probability, the outage capacity, and the ergodic capacity. The obtained analytical results are corroborated by an independent simulation method.
Subject
Electrical and Electronic Engineering,Biochemistry,Instrumentation,Atomic and Molecular Physics, and Optics,Analytical Chemistry
Reference56 articles.
1. A Survey of Device-to-Device Communications: Research Issues and Challenges;Jameel;IEEE Commun. Surv. Tutor.,2018
2. Dangi, R., Lalwani, P., Choudhary, G., You, I., and Pau, G. (2022). Study and Investigation on 5G Technology: A Systematic Review. Sensors, 22.
3. Supporting IoT with Rate-Splitting Multiple Access in Satellite and Aerial-Integrated Networks;Lin;IEEE Internet Things J.,2021
4. Secrecy-Energy Efficient Hybrid Beamforming for Satellite-Terrestrial Integrated Networks;Lin;IEEE Trans. Commun.,2021
5. Joint Beamforming and Power Allocation for Satellite-Terrestrial Integrated Networks with Non-Orthogonal Multiple Access;Lin;IEEE J. Sel. Top. Signal Process.,2019
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