DocumentCode :
1755420
Title :
Sparsity-Aware Adaptive Channel Estimation Based on SNR Detection
Author :
Xudong Zhu ; Jintao Wang ; Linglong Dai ; Zhaocheng Wang
Author_Institution :
Dept. of Electron. Eng., Tsinghua Univ., Beijing, China
Volume :
61
Issue :
1
fYear :
2015
fDate :
42064
Firstpage :
119
Lastpage :
126
Abstract :
Time domain synchronous orthogonal frequency division multiplexing OFDM (TDS-OFDM) has a higher spectral efficiency and faster synchronization than standard cyclic prefix OFDM, but suffers from the performance loss over multipath fading channels due to severe interblock-interference. Recently, compressive sensing (CS) is explored to solve those problems, but it heavily relies on the sparsity level of the channel, which is unknown in practice. In this paper, a signal-to-noise ratio-based sparsity estimation method is proposed to detect the sparsity level of the channel. Then we propose the priori aided subspace pursuit algorithm if the channel sparsity meets the theoretical CS model, otherwise we use an improved iterative channel estimation method with the help of the channel sparsity. Simulation results demonstrate that the proposed scheme could improve the robustness and performance of TDS-OFDM systems compared with the conventional iterative methods or recently proposed CS based methods.
Keywords :
OFDM modulation; channel estimation; fading channels; iterative methods; radiofrequency interference; CS based methods; SNR detection; TDS-OFDM systems; channel sparsity; compressive sensing; cyclic prefix OFDM; interblock-interference; iterative channel estimation method; iterative methods; multipath fading channels; signal-to-noise ratio-based sparsity estimation method; sparsity-aware adaptive channel estimation; subspace pursuit algorithm; synchronization; theoretical CS model; time domain synchronous orthogonal frequency division multiplexing OFDM; Channel estimation; Estimation; Iterative methods; OFDM; Signal to noise ratio; Vectors; Time-domain synchronous OFDM(TDS-OFDM); compressive sensing (CS); signal-to-noise ratio (SNR); subspace pursuit (SP);
fLanguage :
English
Journal_Title :
Broadcasting, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9316
Type :
jour
DOI :
10.1109/TBC.2014.2372271
Filename :
6983610
Link To Document :
بازگشت