Cross Layer Optimization for Fairness Balancing Based on Adaptively Weighted Utility Functions in OFDMA Systems
Commenced in January 2007
Frequency: Monthly
Edition: International
Paper Count: 32807
Cross Layer Optimization for Fairness Balancing Based on Adaptively Weighted Utility Functions in OFDMA Systems

Authors: Jianwei Wang, Timo Korhonen, Yuping Zhao

Abstract:

Cross layer optimization based on utility functions has been recently studied extensively, meanwhile, numerous types of utility functions have been examined in the corresponding literature. However, a major drawback is that most utility functions take a fixed mathematical form or are based on simple combining, which can not fully exploit available information. In this paper, we formulate a framework of cross layer optimization based on Adaptively Weighted Utility Functions (AWUF) for fairness balancing in OFDMA networks. Under this framework, a two-step allocation algorithm is provided as a sub-optimal solution, whose control parameters can be updated in real-time to accommodate instantaneous QoS constrains. The simulation results show that the proposed algorithm achieves high throughput while balancing the fairness among multiple users.

Keywords: OFDMA, Fairness, AWUF, QoS.

Digital Object Identifier (DOI): doi.org/10.5281/zenodo.1080510

Procedia APA BibTeX Chicago EndNote Harvard JSON MLA RIS XML ISO 690 PDF Downloads 1784

References:


[1] S. Toumpis; A. J. Goldsmith; "Capacity regions for wireless Ad Hoc networks," IEEE Transactions on Wireless Communications, vol. 2, no. 4, pp. 736-748, July 2003.
[2] M. Johansson; L. Xiao; "Scheduling, routing and power Allocation for fairness in wireless networks," in IEEE VTC - Spring, Milan, Italy, May 2004.
[3] M. Chiang; "To layer or not to layer: balancing transport and physical layers in wireless multihop networks," in Proceedings of IEEE INFOCOM, Hong Kong, March 2004.
[4] X. Lin; N. B. Shroff; "Joint rate control and scheduling in multihop wireless networks," in Proceedings of the IEEE Conference on Decision and Control, Paradise Island, Bahamas, December 2004.
[5] Li, Z.; Latva-Aho, M.; "Nonblind and semiblind Space-Frequency multiuser detection for multirate MC-CDMA systems," Signal Processing, Volume 54, Issue 11, Nov. 2006
[6] S. Shenker; "Fundamental design issues for the future internet," IEEE JSAC, vol. 13, no. 7, Sept. 1995, pp. 1176-88.
[7] Jiang, Z.; Ge, Y.; Li, Y.; "Max-utility wireless resource management for best-effort traffic," Wireless Communications, IEEE Transactions on Volume 4, Issue 1, Jan. 2005 Page(s):100-111
[8] G. Bianchi; A. T. Campbell; R. R.-F. Liao; "On utility-fair adaptive services in wireless networks," in Proc. 6th Int. Workshop Quality of Service, Napa, CA, May 18-20, 1998, pp. 256-267.
[9] X. Gao; T. Nandagopal; V. Bharghavan; "Achieving application level fairness through utility-based wireless fair scheduling," in Proc. IEEE GLOBECOM, Nov. 2001, pp. 3257-3261.
[10] Goldsmith; A. J.; "Variable-rate variable-power MQAM for fading channel," IEEE Trans. Commun., vol. 45, pp. 1218-1230, Oct. 1997.
[11] Nanda, S.; Balachandran, K.; Kumar, S.; "Adaptation techniques in wireless packet data services," IEEE Commun. Magazine, pp. 54-64, Jan. 2000.
[12] X. Qiu; K. Chawla; "On the performance of adaptive modulation in cellular systems", IEEE Trans. Commun., vol. 47, no. 6, pp. 884-895, Jun. 1999.
[13] Guocong Song; Ye Li; "Cross layer optimization for OFDM wireless networks-Part I: Theoretic Framework," IEEE transaction on wireless communication vol.4. NO. 2, 2005;
[14] Guocong Song; Ye Li; "Cross layer optimization for OFDM wireless networks-Part II: Algorithm Development," IEEE transaction on wireless communication vol.4. NO. 2, 2005;