Secrecy and throughput performance of an energy harvesting hybrid cognitive radio network with spectrum sensing

被引:0
作者
Pranabesh Maji
Kuldeep Yadav
Sanjay Dhar Roy
Sumit Kundu
机构
[1] NIT Durgapur,Department of ECE
来源
Wireless Networks | 2020年 / 26卷
关键词
Cognitive radio network (CRN); Spectrum sensing; Throughput; Imperfect channel state information (CSI); Energy harvesting (EH); Secrecy outage probability (SOP);
D O I
暂无
中图分类号
学科分类号
摘要
In this paper, we evaluate the secrecy outage performance and throughput of a hybrid cognitive radio network, where a secondary user (SU) accesses the primary spectrum either in underlay or overlay mode based on spectrum sensing decision. In underlay, the transmit power of the SU as well as the relay is limited by the maximum acceptable interference at primary user (PU) receiver as required by an PU outage constraint, a quality of service for PU. The secondary network employs a decode and forward relay which harvests energy from the radio frequency signal of SU following a time switching relaying protocol. We develop analytical expressions for secrecy outage considering the impact of sensing decision and sensing time. Impact of sensing time, imperfect channel state information of interfering link, energy harvesting time, acceptable interference threshold and PU outage constraint on the secrecy outage probability, as well as throughput of SU are investigated. Further, an interplay between throughput performance and secrecy outage of the network is highlighted.
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页码:1301 / 1314
页数:13
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共 70 条
[1]  
Haykin S(2005)Cognitive radio: Brain-empowered wireless communications IEEE Journal on Selected Areas in Communications 23 201-220
[2]  
Goldsmith A(2009)Breaking spectrum gridlock with cognitive radios: An information theoretic perspective IEEE Proceedings 97 894-914
[3]  
Jafar SA(2013)On the optimal switching probability for a hybrid cognitive radio system IEEE Transactions on Wireless Communications 12 1594-1605
[4]  
Maric I(2012)Throughput analysis of opportunistic access strategies in hybrid underlay-overlay cognitive radio networks IEEE Transactions on Wireless Communications 11 2024-2035
[5]  
Srinivasa S(2006)NeXt generation/dynamic spectrum access/cognitive radio wireless networks: A survey Computer Networks 50 2127-2159
[6]  
Song H(1967)Energy detection of unknown deterministic signals Proceedings of IEEE 55 523-531
[7]  
Hong JP(2008)Sensing—Throughput tradeoff for cognitive radio network IEEE Transactions on Wireless Communications 7 1326-1337
[8]  
Choi W(2009)Cooperative relay to improve diversity in cognitive radio networks IEEE Communications Magazine 47 111-117
[9]  
Senthuran S(2013)Relaying protocols for wireless energy harvesting and information processing IEEE Transactions on Wireless Communications 12 3622-3636
[10]  
Anpalagan A(2013)Wireless information and power transfer: Architecture design and rate-energy tradeoff IEEE Transactions on Communications 61 4754-4767