Title :
A review for development of feedforward linearisation system on radio over fiber links
Author :
Alifah, S. ; Idrus, S.M. ; Kassim, Norazan M.
Author_Institution :
Fac. of Electr. Eng., UTM, Skudai
Abstract :
Radio over fiber technology provides the efficient and cost effective solution for increased bandwidth demand in wireless area but suffer from performance degradation due to optical transmitter nonlinearity that generates distortion of inband, harmonic and intermodulation in modulating RF signal. A feedforward linearisation is a powerful technique that prefers because can reduce the broadband distortion in microwave/millimeter wave frequencies, reduce the all orders of distortion and the laser relative intensity noise (RIN) simultaneously. This paper reviewed the research progress of feedforward linearisation system in radio over fiber application. Feedforward linearisation system was reported that can suppress third-order intermodulation distortion (IMD3) from 10-20 and RIN reduction from 1-10 dB simultaneously at operating frequency from 0-5 GHz with linearization bandwidth 500-850 MHz. The highest operating frequency is 5.2 GHz with 10 dB IMD3 reduction on 500 MHz linearization bandwidth. Therefore, feedforward linearisation system can improved the RoF performance by linearity improvement so that the system can operate at broadband frequency.
Keywords :
feedforward; intermodulation distortion; linearisation techniques; optical transmitters; radio-over-fibre; RF signal modulation; broadband distortion; feedforward linearisation system; frequency 0 GHz to 5 GHz; frequency 5.2 GHz; frequency 500 MHz to 850 MHz; laser relative intensity noise; microwave frequency; millimeter wave frequency; optical transmitter nonlinearity; radio over fiber links; third-order intermodulation distortion suppression; Bandwidth; Costs; Degradation; Frequency; Harmonic distortion; Intermodulation distortion; Optical distortion; Optical harmonic generation; Optical transmitters; Signal generators; feedforward linearization; intermodulation distortion; optical transmitter; radio over fiber; relative intensity noise;
Conference_Titel :
RF and Microwave Conference, 2008. RFM 2008. IEEE International
Conference_Location :
Kuala Lumpur
Print_ISBN :
978-1-4244-2866-3
Electronic_ISBN :
978-1-4244-2867-0
DOI :
10.1109/RFM.2008.4897421