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Published in: Wireless Networks 6/2014

01-08-2014

A green radio resource allocation scheme for LTE-A downlink systems with CoMP transmission

Authors: Wen-Ching Chung, Chung-Ju Chang, Hsin-Ying Teng

Published in: Wireless Networks | Issue 6/2014

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Abstract

In this paper, we propose a green radio resource allocation (GRRA) scheme for LTE-advanced downlink systems with coordinated multi-point (CoMP) transmission to support multimedia traffic. The GRRA scheme defines a green radio utility function, which is composed of the required transmission power, assigned modulation order, and the number of coordinated transmission nodes. By maximizing this utility function, the GRRA scheme can effectively save transmission power, enhance spectrum efficiency, and guarantee quality-of-service requirements. The simulation results show that when the traffic load intensity is greater than 0.7, the GRRA scheme can save transmission power by more than 33.9 and 40.1 %, as compared with the conventional adaptive radio resource allocation (ARRA) scheme (Tsai et al. in IEEE Trans Wireless Commun 7(5):1734–1743, 2008) with CoMP and the utility-based radio resource allocation (URRA) scheme (Katoozian et al. in IEEE Trans Wireless Commun 8(1):66–71, 2009) with CoMP, respectively. Besides, it enhances the system throughput by approximately 5.5 % and improves Jain’s fairness index for best effort users by more than 155 % over these two ARRA and URRA schemes.

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Appendix
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Literature
1.
go back to reference Niu, Z., Wu, Y., Gong, J., & Yang, Z. (2010). Cell zooming for cost-efficient green cellular networks. IEEE Communications Magazine, 48(11), 74–79.CrossRef Niu, Z., Wu, Y., Gong, J., & Yang, Z. (2010). Cell zooming for cost-efficient green cellular networks. IEEE Communications Magazine, 48(11), 74–79.CrossRef
2.
go back to reference Chen, Y., Zhang, S., Xu, S., & Li, G. Y. (2011). Fundamental trade-offs on green wireless networks. IEEE Communications Magazine, 49(6), 30–37.CrossRef Chen, Y., Zhang, S., Xu, S., & Li, G. Y. (2011). Fundamental trade-offs on green wireless networks. IEEE Communications Magazine, 49(6), 30–37.CrossRef
3.
go back to reference Han, C., Harrold, T., Armour, S., Krikidis, I., Videv, S., Grant, P. M., et al. (2011). Green radio: Radio techniques to enable energy-efficient wireless networks. IEEE Communications Magazine, 49(6), 46–54.CrossRef Han, C., Harrold, T., Armour, S., Krikidis, I., Videv, S., Grant, P. M., et al. (2011). Green radio: Radio techniques to enable energy-efficient wireless networks. IEEE Communications Magazine, 49(6), 46–54.CrossRef
4.
go back to reference Bogucka, H., & Conti, A. (2011). Degrees of freedom for energy savings in practical adaptive wireless systems. IEEE Communications Magazines, 49(6), 38–45.CrossRef Bogucka, H., & Conti, A. (2011). Degrees of freedom for energy savings in practical adaptive wireless systems. IEEE Communications Magazines, 49(6), 38–45.CrossRef
5.
go back to reference Wang, B., Wu, Y., Han, F., Yang, Y. H., & Liu, K. J. R. (2011). Green wireless communications: A time-reversal paradigm. IEEE Journal on Selected Areas in Communications, 29(8), 1698–1710.CrossRef Wang, B., Wu, Y., Han, F., Yang, Y. H., & Liu, K. J. R. (2011). Green wireless communications: A time-reversal paradigm. IEEE Journal on Selected Areas in Communications, 29(8), 1698–1710.CrossRef
6.
go back to reference Ismail, M., & Zhuang, W. (2011). Network cooperation for energy saving in green radio communications. IEEE Wireless Communications, 18(5), 76–81.CrossRef Ismail, M., & Zhuang, W. (2011). Network cooperation for energy saving in green radio communications. IEEE Wireless Communications, 18(5), 76–81.CrossRef
7.
go back to reference Parkvall, S., & Astely, D. (2009). The evolution of LTE towards IMT-advanced. Journal of Communications, 4(3), 146–154.CrossRef Parkvall, S., & Astely, D. (2009). The evolution of LTE towards IMT-advanced. Journal of Communications, 4(3), 146–154.CrossRef
8.
go back to reference 3GPP TR36.913. (2008). Requirements for further advancements for EUTRA (LTE-advanced). 3rd Generation Partnership Project, Tech. Rep., June 2008. 3GPP TR36.913. (2008). Requirements for further advancements for EUTRA (LTE-advanced). 3rd Generation Partnership Project, Tech. Rep., June 2008.
9.
go back to reference Ghosh, A., Ratasuk, R., Mondal, B., Mangalvedhe, N., & Thomas, T. (2010). LTE-advanced: Next-generation wireless broadband technology. IEEE Transactions on Wireless Communications, 17(3), 10–22.CrossRef Ghosh, A., Ratasuk, R., Mondal, B., Mangalvedhe, N., & Thomas, T. (2010). LTE-advanced: Next-generation wireless broadband technology. IEEE Transactions on Wireless Communications, 17(3), 10–22.CrossRef
10.
go back to reference 3GPP TR36.814 (2010). Evolved universal terrestrial radio access (E-UTRA); further advancements for E-UTRA physical layer aspects. 3rd Generation Partnership Project, Tech. Rep., Mar. 2010. 3GPP TR36.814 (2010). Evolved universal terrestrial radio access (E-UTRA); further advancements for E-UTRA physical layer aspects. 3rd Generation Partnership Project, Tech. Rep., Mar. 2010.
11.
go back to reference Andrews, J. G., Choi, W., & Heath, R. W. Jr. (2007). Overcoming interference in spatial multiplexing MIMO cellular networks. IEEE Transactions on Wireless Communications, 14(6), 95–104.CrossRef Andrews, J. G., Choi, W., & Heath, R. W. Jr. (2007). Overcoming interference in spatial multiplexing MIMO cellular networks. IEEE Transactions on Wireless Communications, 14(6), 95–104.CrossRef
12.
go back to reference Karakayali, M. K., Foschini, G. J., & Valenzuela, R. A. (2006). Network coordination for spectrally efficient communications in cellular systems. IEEE Transactions on Wireless Communications, 13(4), 56–61.CrossRef Karakayali, M. K., Foschini, G. J., & Valenzuela, R. A. (2006). Network coordination for spectrally efficient communications in cellular systems. IEEE Transactions on Wireless Communications, 13(4), 56–61.CrossRef
13.
go back to reference Sawahashi, M., Kishiyama, Y., Morimoto, A., Nishikawa, D., & Tanno, M. (2010). Coordinated multipoint transmission/reception techniques for LTE-advanced. IEEE Transactions on Wireless Communications, 17(3), 26–34.CrossRef Sawahashi, M., Kishiyama, Y., Morimoto, A., Nishikawa, D., & Tanno, M. (2010). Coordinated multipoint transmission/reception techniques for LTE-advanced. IEEE Transactions on Wireless Communications, 17(3), 26–34.CrossRef
14.
go back to reference Tölli, A., Codreanu, M., & Juntti, M. (2008). Cooperative MIMO–OFDM cellular system with soft handover between distributed base station antennas. IEEE Transactions on Wireless Communications, 7(4), 1428–1440.CrossRef Tölli, A., Codreanu, M., & Juntti, M. (2008). Cooperative MIMO–OFDM cellular system with soft handover between distributed base station antennas. IEEE Transactions on Wireless Communications, 7(4), 1428–1440.CrossRef
15.
go back to reference Gao, X., Li, A., & Kayama, H. (2009). Low-complexity downlink coordination scheme for multi-user CoMP in LTE-advanced system. IEEE PIMRC. Gao, X., Li, A., & Kayama, H. (2009). Low-complexity downlink coordination scheme for multi-user CoMP in LTE-advanced system. IEEE PIMRC.
16.
go back to reference Fodor, G., Johansson, M., & Soldati, P. (2009). Near optimum power control under fairness constraints in CoMP systems. IEEE GLOBECOM. Fodor, G., Johansson, M., & Soldati, P. (2009). Near optimum power control under fairness constraints in CoMP systems. IEEE GLOBECOM.
17.
go back to reference Liu, J., Chang, Y., Pan, Q., Zhang, X., & Yang, D. (2010). A novel transmission scheme and scheduling algorithm for CoMP-SU–MIMO in LTE-A system. IEEE VTC-Spring. Liu, J., Chang, Y., Pan, Q., Zhang, X., & Yang, D. (2010). A novel transmission scheme and scheduling algorithm for CoMP-SU–MIMO in LTE-A system. IEEE VTC-Spring.
18.
go back to reference Yu, J., Cai, Y., Ma, Y., Zhang, D., & Xu, Y. (2007). A cross-layer design of packet scheduling and resource allocation for multiuser MIMO–OFDM system. ICICS. Yu, J., Cai, Y., Ma, Y., Zhang, D., & Xu, Y. (2007). A cross-layer design of packet scheduling and resource allocation for multiuser MIMO–OFDM system. ICICS.
19.
go back to reference Tsai, C. F., Chang, C. J., Ren, F. C., & Yen, C. M. (2008). Adaptive radio resource allocation for downlink OFDMA/SDMA systems with multimedia traffic. IEEE Transactions on Wireless Communications, 7(5), 1734–1743.CrossRef Tsai, C. F., Chang, C. J., Ren, F. C., & Yen, C. M. (2008). Adaptive radio resource allocation for downlink OFDMA/SDMA systems with multimedia traffic. IEEE Transactions on Wireless Communications, 7(5), 1734–1743.CrossRef
20.
go back to reference Katoozian, M., Navaie, K., & Yanikomeroglu, H. (2009). Utility-based adaptive radio resource allocation in OFDM wireless networks with traffic prioritization. IEEE Transactions on Wireless Communications, 8(1), 66–71.CrossRef Katoozian, M., Navaie, K., & Yanikomeroglu, H. (2009). Utility-based adaptive radio resource allocation in OFDM wireless networks with traffic prioritization. IEEE Transactions on Wireless Communications, 8(1), 66–71.CrossRef
21.
go back to reference Yen, C. M., Chang, C. J., & Wang, L. C. (2010). A utility-based TMCR scheduling scheme for downlink MIMO/OFDMA systems. IEEE Transactions on Vehicular Technology, 59(8), 4105–4115.CrossRef Yen, C. M., Chang, C. J., & Wang, L. C. (2010). A utility-based TMCR scheduling scheme for downlink MIMO/OFDMA systems. IEEE Transactions on Vehicular Technology, 59(8), 4105–4115.CrossRef
22.
go back to reference Jain, R. K., Chiu, D. M. W., & Hawe, W. R. (1984). A quantitative measure of fairness and discrimination for resource allocation and shared computer system. Technical Report DEC-TR-301, Digital Equipment Corporation. Jain, R. K., Chiu, D. M. W., & Hawe, W. R. (1984). A quantitative measure of fairness and discrimination for resource allocation and shared computer system. Technical Report DEC-TR-301, Digital Equipment Corporation.
23.
go back to reference Rahman, M., Yanikomeroglu, H., & Wong, W. (2009). Interference avoidance with dynamic inter-cell coordination for downlink LTE system. IEEE WCNC, April 2009. Rahman, M., Yanikomeroglu, H., & Wong, W. (2009). Interference avoidance with dynamic inter-cell coordination for downlink LTE system. IEEE WCNC, April 2009.
24.
go back to reference 3GPP TR25.814. (2005). Physical layer aspects for evolved UTRA. 3rd Generation Partnership Project, Tech. Rep. 3GPP TR25.814. (2005). Physical layer aspects for evolved UTRA. 3rd Generation Partnership Project, Tech. Rep.
25.
go back to reference Rumney, M. (2009). LTE and the evolution to 4G wireless: Design and measurement challenges. New York: Wiley. Rumney, M. (2009). LTE and the evolution to 4G wireless: Design and measurement challenges. New York: Wiley.
26.
go back to reference Hottinen, A., Tirkkonen, O., & Wichman, R. (2003). Multi-antenna transceiver techniques for 3G and beyond. New York: Wiley.CrossRef Hottinen, A., Tirkkonen, O., & Wichman, R. (2003). Multi-antenna transceiver techniques for 3G and beyond. New York: Wiley.CrossRef
27.
go back to reference Madan, R., Mehta, N. B., Molisch, A. F., & Zhang, J. (2008). Energy-efficient cooperative relaying over fading channels with simple relay selection. IEEE Transactions on Wireless Communications, 7(8), 3013–3025.CrossRef Madan, R., Mehta, N. B., Molisch, A. F., & Zhang, J. (2008). Energy-efficient cooperative relaying over fading channels with simple relay selection. IEEE Transactions on Wireless Communications, 7(8), 3013–3025.CrossRef
28.
go back to reference Ngo, D. T., Tellambura, C., & Nguyen, H. H. (2010). Resource allocation for OFDMA-based cognitive radio multicast networks with primary user activity consideration. IEEE Transactions on Vehicular Technology, 59(4), 1668–1679.CrossRef Ngo, D. T., Tellambura, C., & Nguyen, H. H. (2010). Resource allocation for OFDMA-based cognitive radio multicast networks with primary user activity consideration. IEEE Transactions on Vehicular Technology, 59(4), 1668–1679.CrossRef
29.
go back to reference 3GPP TR 25.996. (2010). Universal mobile telecommunications system (UMTS); spacial channel model for multiple input multiple output (MIMO) simulations. 3rd Generation Partnership Project, Tech. Rep., Jan. 2010. 3GPP TR 25.996. (2010). Universal mobile telecommunications system (UMTS); spacial channel model for multiple input multiple output (MIMO) simulations. 3rd Generation Partnership Project, Tech. Rep., Jan. 2010.
30.
go back to reference WiMAX forum. (2007). Wimax system evaluation methodology. V.2.0. Tech. Rep., Dec. 2007. WiMAX forum. (2007). Wimax system evaluation methodology. V.2.0. Tech. Rep., Dec. 2007.
31.
go back to reference 3GPP TR 25.892. (2004). Feasibility study for OFDM for UTRAN enhancement. 3rd Generation Partnership Project, Tech. Rep., 2004. 3GPP TR 25.892. (2004). Feasibility study for OFDM for UTRAN enhancement. 3rd Generation Partnership Project, Tech. Rep., 2004.
Metadata
Title
A green radio resource allocation scheme for LTE-A downlink systems with CoMP transmission
Authors
Wen-Ching Chung
Chung-Ju Chang
Hsin-Ying Teng
Publication date
01-08-2014
Publisher
Springer US
Published in
Wireless Networks / Issue 6/2014
Print ISSN: 1022-0038
Electronic ISSN: 1572-8196
DOI
https://doi.org/10.1007/s11276-013-0684-8

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