吉林大学学报(工学版) ›› 2015, Vol. 45 ›› Issue (3): 979-984.doi: 10.13229/j.cnki.jdxbgxb201503043

Previous Articles     Next Articles

Outage performance of multiuser transmission network with energy harvesting cooperative relay

DU Guan-yao1, 2, XIONG Ke1, QIU Zheng-ding1   

  1. 1.School of Computer and Information Technology, Beijing Jiaotong University, Beijing 100044, China;
    2.Computer Network Information Center,China Academy of Science,Beijing 100190,China
  • Received:2014-04-14 Online:2015-05-01 Published:2015-05-01

Abstract: The outage performance of multiuser transmission network with an Energy Harvesting (EH) cooperative relay is investigated; where a source transmits independent information to multiple destinations with the help of energy constrained Amplify-and-Forward (AF) relay. The relay can harvest energy from the radio frequency signals transmitted from the source, and it helps the multiuser transmission only with the consumption of the harvested energy. First, an EH Cooperative (EHC) protocol is proposed on the basis of the power-splitting relay receiver architecture, which enables the simultaneous information processing and EH for the multiuser transmission system. Then, the outage performance is theoretically analyzed, and an explicit expression of the system outage probability is derived. Finally, the effects of the source power and relay location on the system performance are discussed. Numerical simulation results demonstrate the accuracy of the analytical results, and reveal that the proposed EHC protocol outperforms traditional non-cooperative scheme in term of outage probability. Besides, deploying the relay close to the source can obtain lower system outage probability.

Key words: communications, radio-frequency(RF), energy harvesting(EH), outage probability, amplify-and-forward (AF), cooperative communication

CLC Number: 

  • TN925
[1] Raghunathan V,Ganeriwal S,Srivastava M.Emerging techniques for long lived wireless sensor networks[J].IEEE Communications Magazine,2006,44(4):108-114.
[2] Medepally B, Mehta N B.Voluntary energy harvesting relays and selection in cooperative wireless networks[J]. IEEE Transactions on Wireless Communications,2010,9(11):3543-3553.
[3] Varshney L R.Transporting information and energy simultaneously[C]∥IEEE International Symposium on Information and Theory, Toronto, 2008:1612-1616.
[4] Zhou X, Zhang R, Ho C K.Wireless information and power transfer: architecture design and rate-energy tradeoff[J]. IEEE Transactions on Communications,2013,61(11):4754-4761.
[5] Laneman J N, Tse D N, Wornell G W.Cooperative diversity in wireless networks: Efficient protocols and outage behavior[J]. IEEE Transactions on Information and Theory,2004,50(12):3062-3080.
[6] Xiong Ke,Fan Ping-yi,Xu Zheng-feng,et al.Optimal cooperative beamforming design for MIMO decode-and-forward relay channels[J].IEEE Transactions on Signal Processing,2014,62(6):1476-1489.
[7] Nasir A A, Zhou X, Durrani S, et al. Relaying protocols for wireless energy harvesting and information processing[J].IEEE Transactions on Wireless Communications,2013,12(7):3622-3636.
[8] Chen Zi-yong, Wang Biao, Xia Bin, et al.Wireless information and power transfer in two-way amplify-and-forward relaying channels[DB/OL].[2013-12-06].http://arxiv.org/abs/1307.7447.
[9] Moritz G L, Rebelatto J L,Souza R D, et al.Time-switching uplink network-coded cooperative communication with downlink energy transfer[DB/OL].[2013-12-06].http://arxiv.org/abs/1312.2544.
[10] Xiong Ke,Fan Ping-yi,Yi Su,et al.Network coding-aware cooperative relaying for downlink cellular relay networks[J].China Communications,2013,10(7):44-56.
[11] Zou Y, Zhu J, Zheng B.A fully distributed opportunistic network coding scheme for cellular relay networks[C]∥IEEE Wireless Communications and Networking Conference, Shanghai, 2013:2937-2942.
[12] Gradshteyn I S, Ryzhik I M.Table of Integrals, Series, and Products[M].7th Edition. Burlington: Academic Press, 2007.
[1] CHEN Yong-heng,LIU Fang-hong,CAO Ning-bo. Analysis of conflict factors between pedestrians and channelized right turn vehicles at signalized intersections [J]. Journal of Jilin University(Engineering and Technology Edition), 2018, 48(6): 1669-1676.
[2] LIU Xiang-yu, YANG Qing-fang, KUI Hai-lin. Traffic guidance cell division based on random walk algorithm [J]. Journal of Jilin University(Engineering and Technology Edition), 2018, 48(5): 1380-1386.
[3] LIU Zhao-hui, WANG Chao, LYU Wen-hong, GUAN Xin. Identification of data characteristics of vehicle running status parameters by nonlinear dynamic analysis [J]. Journal of Jilin University(Engineering and Technology Edition), 2018, 48(5): 1405-1410.
[4] LUAN Xin, DENG Wei, CHENG Lin, CHEN Xin-yuan. Mixed Logit model for understanding travel mode choice behavior of megalopolitan residents [J]. 吉林大学学报(工学版), 2018, 48(4): 1029-1036.
[5] CHEN Yong-heng, LIU Xin-shan, XIONG Shuai, WANG Kun-wei, SHEN Yao, YANG Shao-hui. Variable speed limit control under snow and ice conditions for urban expressway in junction bottleneck area [J]. 吉林大学学报(工学版), 2018, 48(3): 677-687.
[6] WANG Zhan-zhong, LU Yue, LIU Xiao-feng, ZHAO Li-ying. Improved harmony search algorithm on truck scheduling for cross docking system [J]. 吉林大学学报(工学版), 2018, 48(3): 688-693.
[7] CHEN Song, LI Xian-sheng, REN Yuan-yuan. Adaptive signal control method for intersection with hook-turn buses [J]. 吉林大学学报(工学版), 2018, 48(2): 423-429.
[8] SU Shu-jie, HE Lu. Transient dynamic congestion evacuation model of pedestrian at walk traffic planning crossroads [J]. 吉林大学学报(工学版), 2018, 48(2): 440-447.
[9] MENG Pin-chao, LI Xue-yuan, JIA Hong-fei, LI Yan-zhong. Short-time rail transit passenger flow real-time prediction based on moving average [J]. 吉林大学学报(工学版), 2018, 48(2): 448-453.
[10] WANG Zhan-zhong, ZHAO Li-ying, JIAO Yu-Ling, CAO Ning-bo. Social force model of pedestrian-bike mixed flow at signalized crosswalk [J]. 吉林大学学报(工学版), 2018, 48(1): 89-97.
[11] HOU Xian-yao, CHEN Xue-wu. Use of public transit information market segmentation based onattitudinal factors [J]. 吉林大学学报(工学版), 2018, 48(1): 98-104.
[12] GAO Kun, TU Hui-zhao, SHI Heng, LI Zhen-fei. Effect of low visibility in haze weather condition on longitudinal driving behavior in different car-following stages [J]. 吉林大学学报(工学版), 2017, 47(6): 1716-1727.
[13] TAN Li-dong, LIU Dan, LI Wen-jun. Design of bionic compound eye array for traffic accident scene panorama based on fly compound eye [J]. 吉林大学学报(工学版), 2017, 47(6): 1738-1744.
[14] WEI Li-ying, CUI Yu-feng, WEI Jia-rong. Cellular automata model based on local maximum entropy lane-changing rules for electric bicycle flow [J]. 吉林大学学报(工学版), 2017, 47(5): 1436-1445.
[15] YAO Rong-han, ZHANG Xiao-tong, LIAN Lian. Optimization model for controlling reversible approach lanes at signalized intersections [J]. 吉林大学学报(工学版), 2017, 47(4): 1048-1054.
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
No Suggested Reading articles found!