DocumentCode :
120271
Title :
Superimposed training and channel estimation for two-way relay networks
Author :
Xiaoyan Xu ; Jianjun Wu ; Shubo Ren ; Xi Luan ; Haige Xiang
Author_Institution :
EECS, Peking Univ., Beijing, China
fYear :
2014
fDate :
16-19 Feb. 2014
Firstpage :
1050
Lastpage :
1054
Abstract :
In this paper, the superimposed training strategy is introduced into the OFDM modulated amplify-and-forward (AF) two-way relay network (TWRN) to simplify the channel estimation at the destination, and the closed-form Bayesian Cramér-Rao lower bound (CRLB) is derived for the estimation of block-fading frequency-selective channels, which is used to guide the optimal training design. Through the superposition of an additional training vector at the relay under certain power allocation scheme, the separated channel information can be obtained directly at the destination. The Bayesian CRLB is derived for the random channel parameters, and orthogonal training vectors from the two source nodes are required to keep the Bayesian CRLB practical, due to the self-interference in the TWRN. A set of training vectors obtained from the minimization of the Bayesian CRLB are applied in a specific suboptimal channel estimation algorithm, and the mean-square error (MSE) performance is provided to verify the Bayesian CRLB results.
Keywords :
Bayes methods; amplify and forward communication; channel estimation; estimation theory; fading channels; mean square error methods; minimisation; radiofrequency interference; relay networks (telecommunication); Bayesian Cramer-Rao lower bound; CRLB; MSE; OFDM modulation; TWRN; amplify-and-forward network; block-fading channels; channel estimation; frequency-selective channels; mean-square error; minimization; orthogonal training vectors; power allocation; random channel parameters; self-interference; superimposed training; two-way relay network; Bayes methods; Channel estimation; OFDM; Relays; Signal to noise ratio; Training; Vectors; Bayesian Cramér-Rao lower bound(CRLB); Two-way relay; channel estimation; mean-square error; training design;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Advanced Communication Technology (ICACT), 2014 16th International Conference on
Conference_Location :
Pyeongchang
Print_ISBN :
978-89-968650-2-5
Type :
conf
DOI :
10.1109/ICACT.2014.6779119
Filename :
6779119
Link To Document :
بازگشت