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Published in: Wireless Personal Communications 1/2018

14-05-2018

FdICIC: Inter-cell Interference Coordination for Full-Duplex Cellular Systems

Authors: Zihan Zhang, Guanding Yu

Published in: Wireless Personal Communications | Issue 1/2018

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Abstract

This paper investigates the inter-cell interference coordination (ICIC) for heterogeneous networks (HetNets) with full-duplex (FD) small cell base stations to maximize the overall system throughput. To be compatible with the enhanced ICIC (eICIC) and the further enhanced ICIC (FeICIC) of existing LTE standards, the proposed FdICIC technique adopts cell range expansion and almost blank subframe to deal with the complicated interference scenario in such FD HetNets. In detail, the FdICIC includes four steps, namely, choosing the serving base station, pairing users for FD communication, resource block (RB) allocation, and power control of FD users. Through numerical simulation, we demonstrate that: (1) the overall system throughput can be improved by 10–25% with four FD small cell base stations when the residual self-interference is between − 130 to − 110 dB, (2) by carefully selecting the CRE bias, the overall system throughput can be further improved by about 30%, (3) the proposed user pairing, RB allocation, and power control steps have significant contributions to the performance improvement.

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Appendix
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Literature
1.
go back to reference Kim, D., Lee, H., & Hong, D. (2015). A survey of in-band full-duplex transmission: From the perspective of PHY and MAC layers. IEEE Communications Surveys & Tutorials, 17(4), 2017–2046.CrossRef Kim, D., Lee, H., & Hong, D. (2015). A survey of in-band full-duplex transmission: From the perspective of PHY and MAC layers. IEEE Communications Surveys & Tutorials, 17(4), 2017–2046.CrossRef
2.
go back to reference Sabharwal, A., Schniter, P., Guo, D., Bliss, D., Rangarajan, S., & Wichman, R. (2014). In-band full-duplex wireless: Challenges and opportunities. IEEE Journal on Selected Areas in Communications, 32(9), 1637–1652.CrossRef Sabharwal, A., Schniter, P., Guo, D., Bliss, D., Rangarajan, S., & Wichman, R. (2014). In-band full-duplex wireless: Challenges and opportunities. IEEE Journal on Selected Areas in Communications, 32(9), 1637–1652.CrossRef
3.
go back to reference Goyal, S., Liu, P., Panwar, S., Difazio, R., Yang, R., & Bala, E. (2015). Full duplex cellular systems: Will doubling interference prevent doubling capacity. IEEE Communications Magazine, 53(5), 121–127.CrossRef Goyal, S., Liu, P., Panwar, S., Difazio, R., Yang, R., & Bala, E. (2015). Full duplex cellular systems: Will doubling interference prevent doubling capacity. IEEE Communications Magazine, 53(5), 121–127.CrossRef
4.
go back to reference Xie, X., & Zhang, X. (2014). Does full-duplex double the capacity of wireless networks. In IEEE INFOCOM (pp. 253–261). Xie, X., & Zhang, X. (2014). Does full-duplex double the capacity of wireless networks. In IEEE INFOCOM (pp. 253–261).
5.
go back to reference Lee, J., & Quek, T. (2015). Hybrid full-/half-duplex system analysis in heterogeneous wireless networks. IEEE Transactions on Wireless Communications, 14(5), 2883–2895. Lee, J., & Quek, T. (2015). Hybrid full-/half-duplex system analysis in heterogeneous wireless networks. IEEE Transactions on Wireless Communications, 14(5), 2883–2895.
6.
go back to reference Bai, J., & Sabharwal, A. (2012). Distributed full-duplex via wireless side-channels: Bounds and protocols. IEEE Transactions on Wireless Communications, 12(8), 4162–4173.CrossRef Bai, J., & Sabharwal, A. (2012). Distributed full-duplex via wireless side-channels: Bounds and protocols. IEEE Transactions on Wireless Communications, 12(8), 4162–4173.CrossRef
7.
go back to reference Wen, D., & Yu, G. (2016). Time-division cellular networks with full-duplex base stations. IEEE Communications Letters, 20(2), 392–395.CrossRef Wen, D., & Yu, G. (2016). Time-division cellular networks with full-duplex base stations. IEEE Communications Letters, 20(2), 392–395.CrossRef
8.
go back to reference Yu, G., Wen, D., & Qu, F. (2016). Joint user scheduling and channel allocation for cellular networks with full duplex base stations. IET Communications, 10(5), 479–486.CrossRef Yu, G., Wen, D., & Qu, F. (2016). Joint user scheduling and channel allocation for cellular networks with full duplex base stations. IET Communications, 10(5), 479–486.CrossRef
9.
go back to reference Mairton, J., Fodor, G., & Fischione, C. (2016). Spectral efficient and fair user pairing for full-duplex communication in cellular networks. IEEE Transactions on Wireless Communications, 15(11), 7578–7593.CrossRef Mairton, J., Fodor, G., & Fischione, C. (2016). Spectral efficient and fair user pairing for full-duplex communication in cellular networks. IEEE Transactions on Wireless Communications, 15(11), 7578–7593.CrossRef
10.
go back to reference Wen, D., & Yu, G. (2016). Full-duplex and half-duplex: Power efficiency comparison. Electronics Letters, 52(6), 483–485.CrossRef Wen, D., & Yu, G. (2016). Full-duplex and half-duplex: Power efficiency comparison. Electronics Letters, 52(6), 483–485.CrossRef
11.
go back to reference Wen, D., Yu, G., Li, R., Chen, Y., & Li, G. Y. (2017). Results on energy- and spectral-efficiency tradeoff in cellular networks with full-duplex enabled base stations. IEEE Transactions on Wireless Communications, 16(3), 1494–1507.CrossRef Wen, D., Yu, G., Li, R., Chen, Y., & Li, G. Y. (2017). Results on energy- and spectral-efficiency tradeoff in cellular networks with full-duplex enabled base stations. IEEE Transactions on Wireless Communications, 16(3), 1494–1507.CrossRef
12.
go back to reference Sanjay, G., Liu, P., & Shivendra, P. (2017). User selection and power allocation in full-duplex multi-cell networks. IEEE Transactions on Vehicular Technology, 66(3), 2408–2422.CrossRef Sanjay, G., Liu, P., & Shivendra, P. (2017). User selection and power allocation in full-duplex multi-cell networks. IEEE Transactions on Vehicular Technology, 66(3), 2408–2422.CrossRef
13.
go back to reference Yun, J. H. (2016). Intra and inter-cell resource management in full-duplex heterogeneous cellular networks. IEEE Transactions on Mobile Computing, 15(2), 392–405.CrossRef Yun, J. H. (2016). Intra and inter-cell resource management in full-duplex heterogeneous cellular networks. IEEE Transactions on Mobile Computing, 15(2), 392–405.CrossRef
14.
go back to reference Wang, S., Vignesh, V., & Zhang, X. (2015). Exploring full-duplex gains in multi-cell wireless networks: A spatial stochastic framework. In IEEE INFOCOM (pp. 855–863). Wang, S., Vignesh, V., & Zhang, X. (2015). Exploring full-duplex gains in multi-cell wireless networks: A spatial stochastic framework. In IEEE INFOCOM (pp. 855–863).
15.
go back to reference Chandan, P., & Garimella, M. (2016). Full-duplex communication for future wireless networks: Dynamic resource block allocation approach. Physical Communication, 19(5), 61–69. Chandan, P., & Garimella, M. (2016). Full-duplex communication for future wireless networks: Dynamic resource block allocation approach. Physical Communication, 19(5), 61–69.
16.
go back to reference Can, K., & Suhas, D. (2015). Opportunistic scheduling for full-duplex uplink-downlink networks. In IEEE ISIT (pp. 1019–1023). Can, K., & Suhas, D. (2015). Opportunistic scheduling for full-duplex uplink-downlink networks. In IEEE ISIT (pp. 1019–1023).
17.
go back to reference Mohammad, K., Amir, A., Karthikeyan, S., Sampath, R., & Mohammad, F. (2015). Scaling wireless full-duplex in multi-cell networks. In IEEE INFOCOM (pp. 1751–1759). Mohammad, K., Amir, A., Karthikeyan, S., Sampath, R., & Mohammad, F. (2015). Scaling wireless full-duplex in multi-cell networks. In IEEE INFOCOM (pp. 1751–1759).
18.
go back to reference Vasudevan, S., Pupala, R. N., & Sivanesan, K. (2013). Dynamic eICIC—A proactive strategy for improving spectral efficiencies of heterogeneous LTE cellular networks by leveraging user mobility and traffic dynamics. IEEE Transactions on Wireless Communications, 12(10), 4956–4969.CrossRef Vasudevan, S., Pupala, R. N., & Sivanesan, K. (2013). Dynamic eICIC—A proactive strategy for improving spectral efficiencies of heterogeneous LTE cellular networks by leveraging user mobility and traffic dynamics. IEEE Transactions on Wireless Communications, 12(10), 4956–4969.CrossRef
19.
go back to reference Dania, M., Giulio, B., Romano, F., & Marco, P. (2016). An optimized CoMP transmission for a heterogeneous network using eICIC approach. IEEE Transactions on Vehicular Technology, 65(10), 8230–8239.CrossRef Dania, M., Giulio, B., Romano, F., & Marco, P. (2016). An optimized CoMP transmission for a heterogeneous network using eICIC approach. IEEE Transactions on Vehicular Technology, 65(10), 8230–8239.CrossRef
20.
go back to reference Alfarhan, F., Lerbour, R., & Le, Y. (2015). An optimization framework for LTE eICIC and reduced power eICIC. In IEEE Globecom (pp. 1–6). Alfarhan, F., Lerbour, R., & Le, Y. (2015). An optimization framework for LTE eICIC and reduced power eICIC. In IEEE Globecom (pp. 1–6).
21.
go back to reference Hu, H., Weng, J., & Zhang, J. (2016). Coverage performance analysis of FeICIC low power subframes. IEEE Transactions on Wireless Communications, 15(8), 5603–5614.CrossRef Hu, H., Weng, J., & Zhang, J. (2016). Coverage performance analysis of FeICIC low power subframes. IEEE Transactions on Wireless Communications, 15(8), 5603–5614.CrossRef
22.
go back to reference West, D. (2001). Introduction to graph theory. Upper Saddle River: Prentice Hall. West, D. (2001). Introduction to graph theory. Upper Saddle River: Prentice Hall.
23.
go back to reference Han, Z., Ji, Z., & Liu, K. (2005). Fair multiuser channel allocation for OFDMA networks using Nash bargaining solutions and coalitions. IEEE Transactions on Communications, 53(8), 1366–1376.CrossRef Han, Z., Ji, Z., & Liu, K. (2005). Fair multiuser channel allocation for OFDMA networks using Nash bargaining solutions and coalitions. IEEE Transactions on Communications, 53(8), 1366–1376.CrossRef
24.
go back to reference Yaiche, H., Mazumdar, R., & Rosenberg, C. (2000). A game theoretic framework for bandwidth allocation and pricing in broadband networks. IEEE/ACM Transactions On Networking, 8(5), 667–678.CrossRef Yaiche, H., Mazumdar, R., & Rosenberg, C. (2000). A game theoretic framework for bandwidth allocation and pricing in broadband networks. IEEE/ACM Transactions On Networking, 8(5), 667–678.CrossRef
25.
go back to reference Gao, L., Iosifidis, G., Huang, J., Tassiulas, L., & Li, D. (2014). Bargaining-based mobile data offloading. IEEE Journal on Selected Areas in Communications, 32(6), 1114–1125.CrossRef Gao, L., Iosifidis, G., Huang, J., Tassiulas, L., & Li, D. (2014). Bargaining-based mobile data offloading. IEEE Journal on Selected Areas in Communications, 32(6), 1114–1125.CrossRef
26.
go back to reference Feng, D., Lu, L., Wu, Y., Li, G., Feng, G., & Li, S. (2013). Device-to-device communications underlaying cellular networks. IEEE Transactions on Communications, 61(8), 3541–3551.CrossRef Feng, D., Lu, L., Wu, Y., Li, G., Feng, G., & Li, S. (2013). Device-to-device communications underlaying cellular networks. IEEE Transactions on Communications, 61(8), 3541–3551.CrossRef
27.
go back to reference Gjendemsjo, A., Gesbert, D., Oien, G., & Kiani, S. (2006). Optimal power allocation and scheduling for two-cell capacity maximization. In IEEE International Symposium on Modeling and Optimization in Mobile, Ad Hoc and Wireless Networks (pp. 1–6). Gjendemsjo, A., Gesbert, D., Oien, G., & Kiani, S. (2006). Optimal power allocation and scheduling for two-cell capacity maximization. In IEEE International Symposium on Modeling and Optimization in Mobile, Ad Hoc and Wireless Networks (pp. 1–6).
Metadata
Title
FdICIC: Inter-cell Interference Coordination for Full-Duplex Cellular Systems
Authors
Zihan Zhang
Guanding Yu
Publication date
14-05-2018
Publisher
Springer US
Published in
Wireless Personal Communications / Issue 1/2018
Print ISSN: 0929-6212
Electronic ISSN: 1572-834X
DOI
https://doi.org/10.1007/s11277-018-5627-3

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