Title :
Feasibility Study and Experimental Verification of Simplified Fiber-Supported 60-GHz Picocell Mobile Backhaul Links
Author :
Lebedev, Anton ; Xiaodan Pang ; Vegas Olmos, J.J. ; Beltran, M. ; Llorente, Roberto ; Forchhammer, Soren ; Tafur Monroy, Idelfonso
Author_Institution :
Dept. of Photonics Eng., Tech. Univ. of Denmark, Lyngby, Denmark
Abstract :
We propose and experimentally demonstrate a fiber-wireless transmission system for optimized delivery of 60-GHz radio frequency (RF) signals through picocell mobile backhaul connections. We identify advantages of 60-GHz links for utilization in short-range mobile backhaul through feasibility analysis and comparison with an alternative E-band (60-90 GHz) technology. The 60-GHz fiber-wireless-fiber setup is then introduced: two spans of up to 20 km of optical fiber are deployed and bridged by up to 4 m of wireless distance. The 60-GHz radio-over-fiber technology is utilized in the first span of fiber transmission. The system is simplified and tailored for delivery of on-off keying data signals by employing a single module for lightwave generation and modulation combined with a simplified RF downconversion technique by envelope detection. Data signals of 1.25 Gb/s are transmitted, and a bit-error-rate performance below the 7% overhead forward-error-correction limit is achieved for a range of potential fiber deployment scenarios. A spurious free dynamic range of 73 dB-Hz2/3 is attained for a frequency-doubling photonic RF upconversion technique. The power budget margin that is required to extend the wireless transmission distance from 4 m to a few hundred meters has been taken into account in the setup design, and the techniques to extend the wireless distance are analyzed.
Keywords :
amplitude shift keying; error statistics; forward error correction; optical fibre networks; optical modulation; picocellular radio; radio-over-fibre; E-band technology; RF downconversion technique; bit rate 1.25 Gbit/s; bit-error-rate performance; data signals; envelope detection; feasibility analysis; fiber deployment scenarios; fiber transmission; fiber-supported picocell mobile backhaul links; fiber-wireless transmission system; fiber-wireless-fiber setup; frequency 60 GHz to 90 GHz; frequency-doubling photonic RF upconversion technique; lightwave generation; lightwave modulation; on-off keying data signals; optical fiber; overhead forward-error-correction limit; picocell mobile backhaul connections; radio frequency signals; radio-over-fiber technology; short-range mobile backhaul; spurious free dynamic range; wireless distance; wireless transmission distance; Attenuation; Mobile communication; Optical fiber networks; Optical fibers; Radio frequency; Wireless communication; Microwave photonics; optical communications; radio over fiber;
Journal_Title :
Photonics Journal, IEEE
DOI :
10.1109/JPHOT.2013.2277011