Neural Network Aided Digital Self-Interference Cancellation for Full-Duplex Communication Over Time-Varying Channels

被引:26
作者
Kong, Dong Hyun [1 ]
Kil, Yong-Sung [1 ]
Kim, Sang-Hyo [1 ]
机构
[1] Sungkyunkwan Univ, Dept Elect & Comp Engn, Suwon 16419, South Korea
关键词
Interference cancellation; Transceivers; Artificial neural networks; Adaptation models; Mathematical models; Channel estimation; Training; Full-duplex communication; self-interference cancellation; neural networks; time-varying channel; non-linearity estimation; MANAGEMENT;
D O I
10.1109/TVT.2022.3158402
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
In-band full duplex communication requires precise self-interference cancellation (SIC) to successfully decode the received desired signal. The existing neural network (NN) based SIC scheme uses offline trained NN to estimate the non-linear component of received self-interference (SI) over a static SI channel without additional NN training. For the time-varying SI channel, the NN-aided SIC method needs to retrain the NN during in-band full duplex communication to adapt time-varying channels. However, NN training is not fast enough to be done during full duplex communication. Thus, the SIC performance degrades. In this paper, we propose a digital SIC scheme using channel robust NN which takes estimates of linear SI channel coefficients as an input. It was found that the NN could learn the static part of the non-linear behavior of the SI channel well. Our solution can adapt the time-varying SI channel with only the channel coefficient estimation of linear components and a pre-trained NN. The proposed scheme can successfully reduce the SI to the noise floor for both time-invariant and time-varying SI channels.
引用
收藏
页码:6201 / 6213
页数:13
相关论文
共 22 条
[1]  
3GPP, 2020, Standard TR 38.901
[2]  
Balatsoukas-Stimming A, 2018, IEEE INT WORK SIGN P, P1
[3]   Enhancing Cooperative Driving in IEEE 802.11 Vehicular Networks Through Full-Duplex Radios [J].
Bazzi, Alessandro ;
Campolo, Claudia ;
Masini, Barbara M. ;
Molinaro, Antonella ;
Zanella, Alberto ;
Berthet, Antoine O. .
IEEE TRANSACTIONS ON WIRELESS COMMUNICATIONS, 2018, 17 (04) :2402-2416
[4]   Full Duplex Radios [J].
Bharadia, Dinesh ;
McMilin, Emily ;
Katti, Sachin .
ACM SIGCOMM COMPUTER COMMUNICATION REVIEW, 2013, 43 (04) :375-386
[5]   Theoretical analysis of BER performance of nonlinearly amplified FBMC/OQAM and OFDM signals [J].
Bouhadda, Hanen ;
Shaiek, Hmaied ;
Roviras, Daniel ;
Zayani, Rafik ;
Medjahdi, Yahia ;
Bouallegue, Ridha .
EURASIP JOURNAL ON ADVANCES IN SIGNAL PROCESSING, 2014,
[6]  
Choi JI, 2010, MOBICOM 10 & MOBIHOC 10: PROCEEDINGS OF THE 16TH ANNUAL INTERNATIONAL CONFERENCE ON MOBILE COMPUTING AND NETWORKING AND THE 11TH ACM INTERNATIONAL SYMPOSIUM ON MOBILE AD HOC NETWORKING AND COMPUTING, P1
[7]  
Gilabert PL, 2005, ASIA PACIF MICROWAVE, P1191
[8]  
Goyal S, 2014, IEEE ICC, P4987, DOI 10.1109/ICC.2014.6884111
[9]   Wideband Self-Adaptive RF Cancellation Circuit for Full-Duplex Radio: Operating Principle and Measurements [J].
Huusari, Timo ;
Choi, Yang-Seok ;
Liikkanen, Petteri ;
Korpi, Dani ;
Talwar, Shilpa ;
Valkama, Mikko .
2015 IEEE 81ST VEHICULAR TECHNOLOGY CONFERENCE (VTC SPRING), 2015,
[10]  
ITU, 1997, Standard ITU-R M.1225