Chinese Optics Letters, Volume. 12, Issue 5, 050603(2014)

Polarization multiplexing QPSK signal transmission in optical wireless-over f iber integration system at W-band

Jiangnan Xiao, Chanjuan Tang, Xinying Li, Jianjun Yu, Xingxing Huang, Chao Yang, and Nan Chi

We propose and experimentally demonstrate a novel scheme to realize polarization-division-multiplexing quadrature-phase-shift-keying (PDM-QPSK) signal transmission over fiber, wireless and fiber at W-band (75-110 GHz). The generation of polarization multiplexing millimeter-wave (mm-wave) wireless signal is based on the photonic technique. After 20-km fiber transmission, polarization diversity and heterodyne beating are implemented to convert the polarization components of the polarization-multiplexing signals from the optical baseband to W-band so that up to 16 Gb/s mm-wave signals can be delivered over 2-m 2×2 multiple-input multiple-output (MIMO) wireless link. At the receiver base station (BS), polarization combination reconstructs the PDM-QPSK signal which is then launched into another 20-km fiber. In the experiment, coherent detection is introduced to improve receiver sensitivity and constant modulus algorithm (CMA) is applied for polarization de-multiplexing. The bit-error-ratio (BER) for 16-Gb/s PDM-QPSK signal delivery is below the forward-error-correction (FEC) threshold of 3.8×10-3 with the optical signal-to-noise ratio (OSNR) above 11.8 dB.

Tools

Get Citation

Copy Citation Text

Jiangnan Xiao, Chanjuan Tang, Xinying Li, Jianjun Yu, Xingxing Huang, Chao Yang, Nan Chi. Polarization multiplexing QPSK signal transmission in optical wireless-over f iber integration system at W-band[J]. Chinese Optics Letters, 2014, 12(5): 050603

Download Citation

EndNote(RIS)BibTexPlain Text
Save article for my favorites
Paper Information

Category:

Received: Jan. 22, 2014

Accepted: Mar. 27, 2014

Published Online: May. 6, 2014

The Author Email:

DOI:10.3788/col201412.050603

Topics