Power Control and Inter-node Interference Cancellation in Full-Duplex Networks with Residual Self-Interference

We consider a three-node full-duplex (FD) network, where an FD capable base station serves double mobile nodes operating in half-duplex mode. The self-interference at the base station and the inter-node interference (INI) between the uplink and the downlink nodes in the network are both taken into a...

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Published inWireless personal communications Vol. 108; no. 4; pp. 2371 - 2388
Main Authors Wu, Fei, Liu, Donglin
Format Journal Article
LanguageEnglish
Published New York Springer US 01.10.2019
Springer Nature B.V
Subjects
Online AccessGet full text
ISSN0929-6212
1572-834X
DOI10.1007/s11277-019-06526-4

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Abstract We consider a three-node full-duplex (FD) network, where an FD capable base station serves double mobile nodes operating in half-duplex mode. The self-interference at the base station and the inter-node interference (INI) between the uplink and the downlink nodes in the network are both taken into account. We consider the power control and the base station assisted INI suppression for sum achievable rate maximization subject to the transmit power constraints at the base station and the nodes. By reformulating this non-convex problem and separating it into two independent sub-problems, we propose a search method to solve it. We evaluate the performance of the proposed method in a single-cell scenario. The proposed method significantly outperforms other recently developed methods.
AbstractList We consider a three-node full-duplex (FD) network, where an FD capable base station serves double mobile nodes operating in half-duplex mode. The self-interference at the base station and the inter-node interference (INI) between the uplink and the downlink nodes in the network are both taken into account. We consider the power control and the base station assisted INI suppression for sum achievable rate maximization subject to the transmit power constraints at the base station and the nodes. By reformulating this non-convex problem and separating it into two independent sub-problems, we propose a search method to solve it. We evaluate the performance of the proposed method in a single-cell scenario. The proposed method significantly outperforms other recently developed methods.
Author Wu, Fei
Liu, Donglin
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Issue 4
Keywords Inter-node interference suppression
Achievable rate
Self-interference
Full-duplex
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References_xml – reference: KimDLeeHHongDA survey of in-band full-duplex transmission: From the perspective of PHY and MAC layersIEEE Communications Surveys Tutorials20151742017204610.1109/COMST.2015.2403614
– reference: WuFLiSShaoSTangYNear-field self-interference suppression with subscriber beamforming in full-duplex communicationsAEU - International Journal of Electronics and Communications2016701676168310.1016/j.aeue.2016.10.006
– reference: AnCRyuH-GDouble balanced feed network for the self-interference cancellation in full duplex communication systemWireless Personal Communications20179241599161010.1007/s11277-016-3624-y
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– reference: NamCJooCBahkSJoint subcarrier assignment and power allocation in full-duplex ofdma networksIEEE Transactions on Wireless Communications20151463108311910.1109/TWC.2015.2401566
– reference: Spatial channel model for multiple input multiple output (MIMO) simulations, 3GPP TR 25.996 V7.0.0 (2007-06). Technical report.
– reference: BaiJSabharwalADistributed full-duplex via wireless side-channels: Bounds and protocolsIEEE Transactions on Wireless Communications20131284162417310.1109/TWC.2013.071913.122015
– reference: ZhangZLongKVasilakosAVHanzoLFull-duplex wireless communications: Challenges, solutions, and future research directionsProceedings of the IEEE201610471369140910.1109/JPROC.2015.2497203
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– reference: DiBBayatSSongLLiYHanZJoint user pairing, subchannel, and power allocation in full-duplex multi-user ofdma networksIEEE Transactions on Wireless Communications201615128260827210.1109/TWC.2016.2613533
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– reference: FengMMaoSJiangTJoint duplex mode selection, channel allocation, and power control for full-duplex cognitive femtocell networksDigital Communications and Networks201511304410.1016/j.dcan.2015.01.002
– reference: Zhang, R., Ma, M., Li, D., & Jiao, B. (2015, June). Investigation on dl and ul power control in full-duplex systems. In 2015 IEEE international conference on communications (ICC) (pp. 1903–1907).
– reference: Sahai, A., Diggavi, S., & Sabharwal, A. (2013, September). On degrees-of-freedom of full-duplex uplink/downlink channel. In Information Theory Workshop (ITW), 2013 IEEE (pp. 1–5).
– reference: WuFLiuDMaWMitigation of the inter-node interference in multi-antenna full-duplex networksAEU-International Journal of Electronics and Communications20188330931610.1016/j.aeue.2017.07.007
– reference: Cheng, W., Zhang, X., & Zhang, H. (2013, April). Optimal dynamic power control for full-duplex bidirectional-channel based wireless networks. In INFOCOM, 2013 proceedings IEEE (pp. 3120–3128).
– reference: Bi, W., Su, X., Xiao, L., & Zhou, S. (2015, June). On rate region analysis of full-duplex cellular system with inter-user interference cancellation. In 2015 IEEE international conference on communication workshop (ICCW) (pp. 1166–1171).
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Snippet We consider a three-node full-duplex (FD) network, where an FD capable base station serves double mobile nodes operating in half-duplex mode. The...
We consider a three-node full-duplex (FD) network, where an FD capable base station serves double mobile nodes operating in half-duplex mode.The...
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SubjectTerms Communications Engineering
Computer Communication Networks
Engineering
Interference
Networks
Nodes
Power control
Radio equipment
Signal,Image and Speech Processing
Title Power Control and Inter-node Interference Cancellation in Full-Duplex Networks with Residual Self-Interference
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