TY - JOUR
T1 - Optical front-ends to generate optical millimeter-wave signal in radio-over-fiber systems with different architectures
AU - Chen, Lin
AU - Wen, Shuangchun
AU - Li, Ying
AU - He, Jing
AU - Wen, Hong
AU - Shao, Yufeng
AU - Dong, Ze
AU - Pi, Yazhi
PY - 2007/11
Y1 - 2007/11
N2 - We have proposed and experimentally demonstrated three different optical front-ends to implement in wavelength-division-multiplexing (WDM) radio-over-fiber (ROF) networks to minimize the cost of the ROF system. When the number of WDM channels is small, such as smaller than four channels, the simplest front-end to generate WDM optical millimeter (mm)-wave signals is to use only broadband direct-modulation laser (DML) for each WDM channel. In this case, the expensive external modulator can be removed. However, when the number of WDM channels is large, such as larger than four, the frond-end to generate WDM optical mm-wave signals can be realized by using an external modulator to upconvert simultaneously all channels after the WDM channel signals are multiplexed. In this way, the cost of the expensive external modulator will be shared by all channels. For seamless integration of WDM signals that come from the existing backbone with ROF system, a broadband external modulator can be used to upconvert WDM signals.
AB - We have proposed and experimentally demonstrated three different optical front-ends to implement in wavelength-division-multiplexing (WDM) radio-over-fiber (ROF) networks to minimize the cost of the ROF system. When the number of WDM channels is small, such as smaller than four channels, the simplest front-end to generate WDM optical millimeter (mm)-wave signals is to use only broadband direct-modulation laser (DML) for each WDM channel. In this case, the expensive external modulator can be removed. However, when the number of WDM channels is large, such as larger than four, the frond-end to generate WDM optical mm-wave signals can be realized by using an external modulator to upconvert simultaneously all channels after the WDM channel signals are multiplexed. In this way, the cost of the expensive external modulator will be shared by all channels. For seamless integration of WDM signals that come from the existing backbone with ROF system, a broadband external modulator can be used to upconvert WDM signals.
KW - All-optical upconversion
KW - Direct-modulation laser (DML)
KW - Downconversion
KW - External modulator
KW - Optical millimeter generation
KW - Radio-over-fiber (ROF)
KW - Upconversion
KW - Wavelength-division multiplexing (WDM)
UR - http://www.scopus.com/inward/record.url?scp=37349068653&partnerID=8YFLogxK
U2 - 10.1109/JLT.2007.906809
DO - 10.1109/JLT.2007.906809
M3 - Article
AN - SCOPUS:37349068653
SN - 0733-8724
VL - 25
SP - 3381
EP - 3387
JO - Journal of Lightwave Technology
JF - Journal of Lightwave Technology
IS - 11
ER -