Optimal spectrum access and power control of secondary users in cognitive radio networks
Abstract In future 5G communication system, radio resources can be effectively reused by cognitive radio networks (CRNs), where a lot of secondary users (SUs) are able to access the spectrum of primary users (PUs). In this paper, we analyze the optimal spectrum access and power control of SUs on mul...
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doaj-2a5dbe4aaf3c4bca938bc695be6fa96c2020-11-24T21:10:28ZengSpringerOpenEURASIP Journal on Wireless Communications and Networking1687-14992017-05-012017111510.1186/s13638-017-0876-5Optimal spectrum access and power control of secondary users in cognitive radio networksYang Yang0Linglong Dai1Jianjun Li2Shahid Mumtaz3Jonathan Rodriguez4Tsinghua National Laboratory for Information Science and Technology (TNList), Department of Electronic Engineering, Tsinghua UniversityTsinghua National Laboratory for Information Science and Technology (TNList), Department of Electronic Engineering, Tsinghua UniversitySchool of Electric and Information Engineering, Zhongyuan University of TechnologyInstituto de TelecomunicaçõesInstituto de TelecomunicaçõesAbstract In future 5G communication system, radio resources can be effectively reused by cognitive radio networks (CRNs), where a lot of secondary users (SUs) are able to access the spectrum of primary users (PUs). In this paper, we analyze the optimal spectrum access and power control of SUs on multiple bands with the target of maximizing the average sum rate (ASR) of SUs. Specifically, based on the stochastic geometry, the random distributions of PUs and SUs are modeled by Poisson point processes (PPPs), based on which we derive out the closed-form outage probabilities and obtain the ASR of SUs. Then, we formulate the maximization problem of ASR on multiple bands under the constraints of outage probabilities. With the help of convex optimization, the optimal density of SUs is obtained in closed-form when the power of SUs is fixed. The convexity of ASR is also verified, and we evaluate the optimal power of SUs when the density of SUs is fixed. Based on these two obtained results, a spectrum access and power control algorithm is further proposed to maximize the ASR of SUs on multiple bands. Simulation results demonstrate that the proposed algorithm can achieve a higher maximum ASR of SUs over the average power allocation algorithm, and the density and power boundary of SUs are constrained by PUs as well as the interference in the networks.http://link.springer.com/article/10.1186/s13638-017-0876-5Cognitive radio networksSpectrum accessPower controlPoisson point processConvex optimization |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Yang Yang Linglong Dai Jianjun Li Shahid Mumtaz Jonathan Rodriguez |
spellingShingle |
Yang Yang Linglong Dai Jianjun Li Shahid Mumtaz Jonathan Rodriguez Optimal spectrum access and power control of secondary users in cognitive radio networks EURASIP Journal on Wireless Communications and Networking Cognitive radio networks Spectrum access Power control Poisson point process Convex optimization |
author_facet |
Yang Yang Linglong Dai Jianjun Li Shahid Mumtaz Jonathan Rodriguez |
author_sort |
Yang Yang |
title |
Optimal spectrum access and power control of secondary users in cognitive radio networks |
title_short |
Optimal spectrum access and power control of secondary users in cognitive radio networks |
title_full |
Optimal spectrum access and power control of secondary users in cognitive radio networks |
title_fullStr |
Optimal spectrum access and power control of secondary users in cognitive radio networks |
title_full_unstemmed |
Optimal spectrum access and power control of secondary users in cognitive radio networks |
title_sort |
optimal spectrum access and power control of secondary users in cognitive radio networks |
publisher |
SpringerOpen |
series |
EURASIP Journal on Wireless Communications and Networking |
issn |
1687-1499 |
publishDate |
2017-05-01 |
description |
Abstract In future 5G communication system, radio resources can be effectively reused by cognitive radio networks (CRNs), where a lot of secondary users (SUs) are able to access the spectrum of primary users (PUs). In this paper, we analyze the optimal spectrum access and power control of SUs on multiple bands with the target of maximizing the average sum rate (ASR) of SUs. Specifically, based on the stochastic geometry, the random distributions of PUs and SUs are modeled by Poisson point processes (PPPs), based on which we derive out the closed-form outage probabilities and obtain the ASR of SUs. Then, we formulate the maximization problem of ASR on multiple bands under the constraints of outage probabilities. With the help of convex optimization, the optimal density of SUs is obtained in closed-form when the power of SUs is fixed. The convexity of ASR is also verified, and we evaluate the optimal power of SUs when the density of SUs is fixed. Based on these two obtained results, a spectrum access and power control algorithm is further proposed to maximize the ASR of SUs on multiple bands. Simulation results demonstrate that the proposed algorithm can achieve a higher maximum ASR of SUs over the average power allocation algorithm, and the density and power boundary of SUs are constrained by PUs as well as the interference in the networks. |
topic |
Cognitive radio networks Spectrum access Power control Poisson point process Convex optimization |
url |
http://link.springer.com/article/10.1186/s13638-017-0876-5 |
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