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Stochastic Optimization in Cooperative Relay Networks for Revenue Maximization

Stochastic Optimization in Cooperative Relay Networks for Revenue Maximization
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摘要 In cellular networks, cooperative relaying is an economic and promising way to enlarge the network capacity and coverage. In the case that multiple users and multiple relays are taken into account, efficient resource allocation is important in such networks. In this paper, we consider the joint relay power control with amplify-and-forward(AF) strategy and dynamic pricing for uplink cellular networks in order to maximize the network administrator's system revenue. The system revenue is associated with pricing strategies and mobile users' random data request, which is supported by the relay assisted transmission. To deal with the problem of the coupling in pricing and relay resource allocation, we utilize Lyapunov optimization techniques to design online pricing and relay power control without any statistic information of random events in networks. Theoretical analysis shows that the proposed algorithm can achieve a near-optimal performance and simulation results also validate its effectiveness and robustness. In cellular networks, cooperative relaying is an economic and promising way to enlarge the network capacity and coverage. In the case that multiple users and multiple relays are taken into account, efficient resource allocation is important in such networks. In this paper, we consider the joint relay power control with amplify- and-forward (AF) strategy and dynamic pricing for uplink cellular networks in order to maximize the network administrator's system revenue. The system revenue is associated with pricing strategies and mobile users' random data request, which is supported by the relay assisted transmission. To deal with the problem of the coupling in pricing and relay resource allocation, we utilize Lyapunov optimization techniques to design online pricing and relay power control without any statistic information of random events in networks. Theoretical analysis shows that the proposed algorithm can achieve a near-optimal performance and simulation results also validate its effectiveness and robustness.
作者 吕红芳 张浩
出处 《Journal of Shanghai Jiaotong university(Science)》 EI 2014年第3期287-293,共7页 上海交通大学学报(英文版)
关键词 cooperative relay ener management dynamic uricin stochastic optimization cooperative relay energy management dynamic pricing stochastic optimization
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参考文献15

  • 1Lou S J, YANG L X. Joint relay selection and power allocation for two-way relay channels with asymmetric traffic requirements [J]. KSII Transactions on Internet and Information Systems, 2013, 7(8): 1955-1971.
  • 2LE L, HOSSAIN E. Cross-layer optimization frameworks for multi-hop wireless networks using cooperative diversity [J]. IEEE Transactions on Wireless Communications, 2008, 7(7): 2592-2602.
  • 3Lou S J, YANG L X. Performance analysis of joint relay selection and power allocation for two-way relay channels [C]// International Conference on Computer, Networks and Communication Engineering 2013. Beijing, China: Atlantis Press, 2013: 455-460.
  • 4Xu, H, LI B C. Resource allocation with flexible channel cooperation in cognitive radio networks [J]. IEEE Transactions on Mobile Computing, 2013, 12(5): 957- 970.
  • 5CAO Q, JING Y D, ZHAO H V. Power allocation in multi-user wireless relay networks through bargaining [J]. IEEE Transactions on Wireless Communications, 2013, 12(6): 2870-2882.
  • 6MOGHADARI M, HOSSAIN E, LE L B. Delay-optimal distributed scheduling in multi-user multi-relay cellular wireless networks [J]. IEEE Transactions on Communications, 2013, 61(4): 1349-1360.
  • 7URGAONKAR R, NEELY M J. Delay-limited cooperative communication with reliability constraints in wireless networks [Cl// Proceedings of IEEE International Conference on Computer Communications 2009. Rio de Janeiro, Brazil: IEEE, 2009: 2561-2565.
  • 8PHAM NT, HUYNH T, HWANG W J. Throughputoptimal scheduling for cooperative relaying in wireless access networks [J]. EURASIP Journal on Wireless Communications and Networking, 2012, 2012(1): 70.
  • 9HADEF M, ApOSTOLARAS A, MOURAD A, et al. Energy efficiency performance evaluation of back-pressure driven cooperative relay selection for WiMAX systems [C]// Proceedings of the 6th International ICST Conference on Simulation Tools and Techniques. Cannes, France ICST, 2013: 258-267.
  • 10NEELY M J. Stochastic network optimization with application to communication and queueing systems [J]. Synthesis Lectures on Communication Networks, 2010, 3(1): 1-211.

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