Title :
A RF adaptive least mean square algorithm for self-interference cancellation in co-frequency co-time full duplex systems
Author :
Jun Wang ; Hongzhi Zhao ; Youxi Tang
Author_Institution :
Nat. Key Lab. of Sci. & Technol. on Commun., Univ. of Electron. Sci. & Technol. of China, Chengdu, China
Abstract :
Considering the radio frequency (RF) self-interference cancellation of the full duplex transceiver, which can transmit and receive simultaneously at the same frequency band. The current studies mainly focus on the feasibility verification, most of which are realized by manual adjustment of the self-interference parameters, and lack of the theoretical analysis of the interference cancellation capability. To solve this problem, an adaptive least mean square (ALMS) algorithm for the self-interference cancellation at the RF stage is presented in this paper. Besides, the convergence and steady state performances of the ALMS algorithm are proved and analyzed, respectively. Analysis and simulation results show that the ALMS algorithm can achieve significant cancellation of the self-interference at the RF stage. Moreover, it is revealed that the interference cancellation performance and convergence speed of the ALMS algorithm are related with the following parameters: the duration per iteration, normalized step size, as well as the ratio of the interference power and total power of the desired signal plus noise.
Keywords :
convergence; interference suppression; least mean squares methods; multiplexing; radio transceivers; ALMS algorithm; CCFD transceiver; RF adaptive least mean square algorithm; RF self-interference cancellation; RF stage; co-frequency co-time full duplex systems; convergence performances; convergence speed; duration per iteration; full duplex transceiver; interference cancellation capability; interference cancellation performance; interference power; manual adjustment; radio frequency self-interference cancellation; self-interference parameters; steady state performances; Algorithm design and analysis; Convergence; Interference cancellation; Radio frequency; Steady-state; Vectors; RF stage; co-frequency and co-time full duplex; least mean square; self-interference cancellation;
Conference_Titel :
Communications (ICC), 2014 IEEE International Conference on
Conference_Location :
Sydney, NSW
DOI :
10.1109/ICC.2014.6884217