DocumentCode :
1977852
Title :
Adaptive step control of LMS-based Interference Cancellation for WMAN ICS radio repeater
Author :
Jeong Gon Kim ; Won Geon Bae
Author_Institution :
Dept. of Electron. Eng., Korea Polytech. Univ., South Korea
fYear :
2015
fDate :
12-14 Jan. 2015
Firstpage :
253
Lastpage :
258
Abstract :
The use of repeater for the support of high data rate data transmission and the extension of cell coverage is imperative for the Wibro system, which is based on the IEEE 802.16e standardization. Generally, if the separation between transmitting and receiving antennas is not sufficient, the oscillation of repeater and the interference due to the feedback signals from original transmitted signal may be occurred. Hence, the Interference Cancellation System (ICS) should be implemented as the important part of the repeater system for the mobile cellular systems in order to eliminate an unwanted signals from the corrupted signals in the receiver. In this paper, we propose an adaptive techniques for the LMS-based interference cancellation methods by changing the step size according to the variation of channel environment in order to improve the performance degradation which is occurred by using the fixed step size approach. Simulation results show that the proposed scheme attains a little lower BER performance and much faster convergence speed compared to the conventional LMS-based interference cancellation techniques. The proposed scheme can be applied to other OFDM-based cellular systems and also be expected to achieve a similar performance improvement to IMT-advanced system, which is called as the next generation mobile communication standards.
Keywords :
WiMax; adaptive control; cellular radio; error statistics; interference suppression; least mean squares methods; radio repeaters; wireless channels; BER performance; IEEE 802.16e standardization; LMS-based interference cancellation; WMAN ICS radio repeater system; Wibro system; adaptive step control; adaptive techniques; cell coverage extension; channel environment variation; data transmission; fixed step size approach; interference cancellation system; mobile cellular systems; Bit error rate; Convergence; Interference cancellation; Least squares approximations; Repeaters; Signal processing algorithms; Signal to noise ratio; Adaptive Interference Cancellation; ICS; LMS; Mobile Communication Repeater; Wibro;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Information Networking (ICOIN), 2015 International Conference on
Conference_Location :
Cambodia
Type :
conf
DOI :
10.1109/ICOIN.2015.7057892
Filename :
7057892
Link To Document :
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