DocumentCode
1360150
Title
Scheme for a High-Capacity 60 GHz Radio-Over-Fiber Transmission System
Author
Li, Jing ; Ning, Tigang ; Pei, Li ; Qi, Chunhui
Author_Institution
Key Lab. of All Opt. Network & Adv. Telecommun. Network of EMC, Beijing Jiaotong Univ., Beijing, China
Volume
1
Issue
4
fYear
2009
fDate
9/1/2009 12:00:00 AM
Firstpage
324
Lastpage
330
Abstract
We investigate a scheme for a 60 GHz radio-over-fiber transmission system by using a dual-electrical Mach-Zehnder modulator (De-MZM) and an optical interleaver. Such a system includes the generation of 60 GHz millimeter-wave (mm-wave) signals and the delivery of a remote local oscillator (LO). In the scheme, two lasers with frequency deviation are used as sources, and a De-MZM is biased at the minimum transmission point to realize optical carrier suppression modulation. After fiber transmission, an optical interleaver is used to separate subcarriers. If one laser is modulated with baseband data and the other is not, 60 GHz mm-wave signals with and without modulating data can be generated by using photodiodes, one of which can be used in mm-wave communication and the other can be used as a remote LO. In this work, we theoretically analyze the bit-error-rate performance and power degradation due to the lasers´ phase noise. Our scheme uses only a commercially used De-MZM and optical interleaver; therefore, no sensitive equipment and complicated structure is needed, which guarantees the system has steady performance and a cost-effective architecture.
Keywords
electro-optical modulation; error statistics; laser beams; laser noise; microwave photonics; millimetre wave generation; optical transmitters; oscillators; phase noise; photodiodes; radio-over-fibre; De-MZM; bit-error-rate performance; dual-electrical Mach-Zehnder modulator; high-capacity radio-over-fiber transmission system; laser frequency deviation; laser phase noise; millimeter-wave generation; mm-wave communication; optical carrier suppression modulation; optical interleaver; photodiodes; remote local oscillator; Fiber optics communications; Fiber optics links and subsystems; Modulation; Radio frequency photonics;
fLanguage
English
Journal_Title
Optical Communications and Networking, IEEE/OSA Journal of
Publisher
ieee
ISSN
1943-0620
Type
jour
DOI
10.1364/JOCN.1.000324
Filename
5227792
Link To Document