Browse > Article
http://dx.doi.org/10.7840/kics.2015.40.12.2353

Interference Cancellation for Wireless LAN Systems Using Full Duplex Communications  

Han, Suyong (Korea Aerospace University, Dept. of Electronics and Information Engineering)
Song, Choonggeun (Korea Aerospace University, Dept. of Electronics and Information Engineering)
Choi, Jihoon (Korea Aerospace University, Dept. of Electronics and Information Engineering)
Abstract
In this paper, we employ the single channel full duplex radio for wireless local area network (WLAN) systems, and design digital interference cancellers using adaptive signal processing. When the full duplex scheme is used for WLAN systems with multiple transmit and receive antennas, some interference is caused through the feedback of transmit signals from multiple antennas. To remove the feedback interference, we derive the least mean square (LMS), normalized LMS (NLMS), and recursive least squares (RLS) algorithms based on adaptive signal processing techniques. In addition, we analyze the theoretical convergence of the proposed LMS and RLS methods. The channel capacity of full duplex radios increases by two times than that of half duplex radios, when the packet error rate (PER) performances for the two systems are identical. Through numerical simulations in WLAN systems, it is shown that the full duplex method with the proposed interference cancellers has a similar PER performance with the conventional half duplex transmission scheme.
Keywords
Full Duplex; Adaptive Filter; IEEE 802.11ac; Interference Cancellation; Multiantenna;
Citations & Related Records
Times Cited By KSCI : 3  (Citation Analysis)
연도 인용수 순위
1 IEEE 802.11ac, Part 11: Wireless LAN Medium Access Control (MAC) and Physical Layer (PHY) Specification: Enhancements for Very High Throughput for Operation in Bands below 6 Ghz, 2013.
2 IEEE 802.11n, Part 11: Wireless LAN Medium Access Control (MAC) and Physical Layer (PHY) Specification: Enhancements for Higher Throughput, 2009.
3 D. Bharadia, E. McMilin, and S. Katti, "Full duplex radios," in Proc. ACM SIGCOMM 2013, pp. 375-386, Hong Kong, China, Aug. 2013.
4 J. I. Choi, M. Jain, K. Srinivasan, P. Levis, and S. Katti, "Achieving single channel, full duplex wireless communication," in Proc. MobiCom 2010, pp. 1-12, Chicago, USA, Sept. 2010.
5 W. J. Kim, T. W. Song, T. Y. Kim, and S. H. Pack, "Medium access control protocols for full-duplex communications in WLAN systems: approaches and challenges," J. KICS, vol. 40, no. 7, pp. 1276-1285, Jul. 2015.   DOI
6 A. Sahai, M. Duarte, E. Everett, J. Bai, G. Patel, C. Dick, and A. Sabharwal, Full duplex wireless: from experiments to theory, Retrieved July, 2015, from http://scenic.princeton.edu/openhouse2013/slides/Keynote_Ashu.pdf.
7 S. W. Jeon, "Recent study on interference management for full-duplex cellular systems," J. KICS, vol. 40, no. 7, pp. 1266-1275, Jul. 2015.   DOI
8 M. Duarte and A. Sabharwal, "Full duplex wireless communications using off the shelf radios: feasibility and first results," in Proc. ASILOMAR 2010, pp. 1558-1562, Pacific Grove, USA, Nov. 2010.
9 M. Jain, J. I. Choi, T. M. Kim, D. Bharadia, S. Seth, K. Srinivasan, P. Levis, S. Katti, and P. Sinha, "Practical, real-time, full duplex wireless," in Proc. MobiCom 2011, pp. 301- 312, Las Vegas, USA, Sept. 2011.
10 E. Aryafar, M. A. Khojastepour, K. Sundaresan, S. Rangarajan, and M. Chiang, "MIDU: enabling MIMO full duplex," in Proc. MobiCom 2012, pp. 257-268, Istanbul, Turkey, Aug. 2012.
11 C. Y. An and H. G. Ryu, "SSD (Simultaneous Single Band Duplex) system using RF cancellation and digital cancellation," J. KICS, vol. 39A, no. 2, pp. 100-108, Feb. 2014.
12 S. Haykin, Adaptive filter theory, 4th Ed., Pearson, 2002.
13 S. M. Alamouti, "A simple transmit diversity technique for wireless communications," IEEE J. Select Areas Commun., vol. 16, no. 8, pp. 1451-1458, Oct. 1998.   DOI
14 Guidelines for evaluation of radio transmission technologies for IMT-2000, Rec. ITU-R M.1225, 1997.