Title :
Channel Equalization Using Independent Component Analysis in PDM-CO-OFDM
Author :
Xiang Li ; Wen-De Zhong ; Alphones, Arokiaswami ; Changyuan Yu
Author_Institution :
Sch. of Electr. & Electron. Eng., Nanyang Technol. Univ., Singapore, Singapore
Abstract :
We propose a channel equalization method without training symbols (TSs) based on the independent component analysis (ICA) for polarization-division-multiplexing coherent-optical orthogonal-frequency-division-multiplexing (PDM-CO-OFDM) transmission systems. Compared with the conventional TS-based channel equalization method, the proposed method with 80 collected OFDM symbols shows a better transmission performance in the case of QPSK modulation format, and almost the same performance in the case of 16-quadrature amplitude modulation (QAM) format. In addition, we propose a new channel frequency response initialization method to solve the permutation indeterminacy and complex uncertain scaling problems in ICA-based channel equalization. The proposed initialization method shows faster convergence speed than the conventional random initialization method in the channel equalization process. Finally, we examine the number of OFDM symbols required for the proposed ICA-based channel equalization. This study shows that 40 and 80 OFDM symbols are sufficient for the QPSK and 16-QAM formats, respectively. Since the proposed ICA-based channel equalization method is free of TSs, the spectral efficiency of the PDM-CO-OFDM systems can be improved considerably.
Keywords :
OFDM modulation; convergence; frequency response; independent component analysis; optical fibre communication; quadrature phase shift keying; 16-QAM format; 16-quadrature amplitude modulation; ICA; PDM-CO-OFDM; QPSK modulation; TS-based channel equalization method; channel frequency response initialization method; independent component analysis; polarization-division-multiplexing coherent-optical orthogonal-frequency-division-multiplexing transmission system; spectral efficiency; training symbol; Channel estimation; Convergence; Equalizers; Frequency response; OFDM; Phase shift keying; Orthogonal-frequency-division-multiplexing (OFDM); channel equalization; independent component analysis (ICA);
Journal_Title :
Photonics Technology Letters, IEEE
DOI :
10.1109/LPT.2014.2300507