Publication | Open Access
Experimental study of coexistence of multi-band OFDM-UWB and OFDM-baseband signals in long-reach PONs using directly modulated lasers
13
Citations
12
References
2011
Year
EngineeringOptical ModulationOptical Wireless CommunicationFiber OpticsHigh-power LasersFiber-optic CommunicationOfdm SystemOfdm-baseband SignalsOfdm-uwb Sub-bandsDml BandwidthOptical CommunicationLong-reach PonsOptical NetworkingOfdm-uwb SignalsMulti-band Ofdm-uwbPhotonicsPassive Optical NetworkRadio Over FiberIntensity ModulationOptical Fiber Communication
Transmission of coexisting Orthogonal Frequency Division Multiplexing (OFDM)-baseband (BB) and multi-band OFDM-ultra-wideband (UWB) signals along long-reach passive optical networks using directly modulated lasers (DML) is experimentally demonstrated.When optimized modulation indexes are used, bit error ratios not exceeding 5 × 10⁻⁴ can be achieved by all (OFDM-BB and three OFDM-UWB sub-bands) signals for a reach of 100 km of standard single-mode fiber (SSMF) and optical signal-to-noise ratios not lower than 25dB@0.1 nm. It is experimentally shown that, for the SSMF reach of 100km, the optimized performance of coexisting OFDM-BB and OFDM-UWB signals is mainly imposed by the combination of two effects: the SSMF dispersion-induced nonlinear distortion of the OFDM-UWB signals caused by the OFDM-BB and OFDM-UWB signals, and the further degradation of the OFDM-UWB signals with higher frequency, due to the reduced DML bandwidth.
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