PhotonIcs and Electromagnetics Research Symposium,
also known as Progress In Electromagnetics Research Symposium
PIERS Proceedings
Published: 2015-07-09
Bidirectional Radio-on-Fiber Transport Systems Using Fiber Nonlinearity and Injection Locked Technique
By
Proceedings of 2015 Photonics & Electromagnetics Research Symposium, Prague, July 6 - 9,Page(s)506-509
Abstract
We propose a novel bidirectional transmission system based on stimulated Brillouin scattering (SBS) effect and injection locked distributed-feedback (DFB) laser to achieve optical single sideband (OSSB) modulation for downlink transmission. For uplink transmission, we reuse transmitting light by phase modulation (PM) to avoid signal interference each other in bidirectional transport After 25 km single mode fiber (SMF) transmission, we can observe the sideband power ratio (SBPR) > 15 dB for downlink transmission and system’s power penalty is < 2.8 dB. Good performances for bit error rate (BER) analysis are observed in our proposed bidirectional transmission system.
Citation
G. C. Lin, and Wen-Shing Tsai, "Bidirectional Radio-on-Fiber Transport Systems Using Fiber Nonlinearity and Injection Locked Technique," Proceedings of 2015 Photonics & Electromagnetics Research Symposium, Prague, July 6 - 9,Page(s)506-509
References

1. Chi, H. and J. Yao, "Frequency quadrupling and upconversion in a radio over fiber link," Journal of Lightwave Tech., Vol. 26, 2706-2711, 2008.
doi:10.1109/jlt.2008.927613        Google Scholar

2. Lee, U. S. H. D. Jung and S. Kook, "Optical single sideband signal generation using phase modulation of semiconductor optical amplifier," IEEE Photon Tech. Lett., Vol. 16, 1373-1375, 2004.
doi:10.1109/lpt.2004.826029        Google Scholar

3. Blais, S. R. and J. Yao, "Optical single sideband modulation using an ultranarrowualtransmission-band fiber bragg grating," IEEE Photon Tech. Lett., Vol. 18, 2230-2232, 2006.
doi:10.1109/lpt.2006.884235        Google Scholar

4. Sung, H. K. E. K. Lau and M. C. Wu, "Optical single sideband modulation using strong optical injection-locked semiconductor lasers," IEEE Photon Tech. Lett., Vol. 19, 1005-1007, 2007.
doi:10.1109/lpt.2007.898760        Google Scholar