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Simulative Analysis of Multi-tone RoF Transmission System

  • Kulwinder Singh , Rustam Ram Singh und Amandeep Kaur EMAIL logo
Veröffentlicht/Copyright: 7. Juli 2015
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Abstract

This paper deals with the design of multi-tone Radio over Fiber (RoF) system, which could efficiently support increasing demand of new services and increasing user traffic. It analyzed electrical power at different frequencies, SNR at input power Pin at different bit rates. It also investigated BER at input power and at increasing number of channels.

PACS® (2010).: 42.79.Sz; 07.57.Hm; 42.30.Lr

References

1. IEEE 802.15 Wireless Personal Area Networks (WPAN).Suche in Google Scholar

2. ThomasVA, GhafoorS, El-HajjarM, HanzoL. A full duplex diversity assisted hybrid analogue/digitized radio over fiber optical/wireless integration. IEEE Commun Lett2013;17:41012.10.1109/LCOMM.2012.122012.120975Suche in Google Scholar

3. LiuC, ZhangL, ZhuM, WangJ, ChangL, ChangG. A novel multi-service small cell cloud radio access network for mobile backhaul and computing based on radio over fiber technologies. J Lightwave Technol2013;31:286975.10.1109/JLT.2013.2274193Suche in Google Scholar

4. WangJ, ZhuH, GomesNJ. Distributed antenna systems for mobile communications in high speed trains. IEEE J Sel Areas Commun2012;30:67583.10.1109/JSAC.2012.120502Suche in Google Scholar

5. JiW, KangZ. Design of WDM RoF PON based on OFDM and optical hetridyne. J Opt Commun Networks2013;5:6527.10.1364/JOCN.5.000652Suche in Google Scholar

6. MitsuyamaK, IkedaT, OhtsukiT. Development and performance evaluation of MMSE macro diversity reception system with delay difference correction. IEEE Trans Veh Technol2013;62:428898.10.1109/TVT.2013.2264943Suche in Google Scholar

7. KassaW-E, BillabertA-L, FaciS, AlganiC. Electrical modeling of semiconductor laser diode for heterodyne RoF simulation system. IEEE J Quantum Electron2013;49:894900.10.1109/JQE.2013.2274383Suche in Google Scholar

8. FanS-H, LiuC, ChangG-K. Hetrodyne optical carrier suppression for millimeter-wave-over-fiber systems. IEEE J Lightwave Technol2013;31:321016.10.1109/JLT.2013.2281198Suche in Google Scholar

9. KuriT, TodaH, KitayamaK. Dense wavelength division multiplexing millimeter wave band radio-on-fiber signal transmission with photonic down conversion. J Lightwave Technol2003;21:151017.10.1109/JLT.2003.812465Suche in Google Scholar

10. Toress-CompanyV, LeairdDE, WeinerAM. Simultaneous broadband microwave down conversion and programmable complex filtering by optical frequency comb shaping. Opt Lett2012;37:39935.10.1364/OL.37.003993Suche in Google Scholar PubMed

Received: 2015-1-11
Accepted: 2015-2-12
Published Online: 2015-7-7
Published in Print: 2016-3-1

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