Title :
A Fully Bidirectional 2.4-GHz Wireless-Over-Fiber System Using Photonic Active Integrated Antennas (PhAIAs)
Author :
Sittakul, Vitawat ; Cryan, Martin J.
Author_Institution :
Bristol Univ., Bristol
Abstract :
This paper describes a low-cost scheme for implementing in-building distributed antenna systems using the photonic-active-integrated-antenna (PhAIA) concept, whereby photonic devices are integrated directly with planar antennas. Deembedded input impedance is measured for an 850-nm vertical-cavity surface-emitting laser and photodiode from 0-10 GHz, and the devices are matched directly to the nonradiating edge of a rectangular-microstrip-patch antenna. Link gain, 1-dB compression point, and spurious-free dynamic range are measured in the links. The fully bidirectional system, which is far from being completely optimized, is then tested over a 300-m laboratory-based multimode fiber link and a 220-m in-building dark-fiber link. Results are shown for throughput and signal-to-noise ratio, and this paper shows that such systems can achieve up to 10-m RF range, at reduced throughput, with no RF amplification.
Keywords :
microstrip antennas; microwave photonics; photodiodes; planar antennas; radio-over-fibre; surface emitting lasers; compression point; deembedded input impedance; frequency 0 GHz to 10 GHz; link gain; photodiode; photonic active integrated antennas; photonic devices; planar antennas; rectangular microstrip patch antenna; spurious free dynamic range; vertical cavity surface emitting laser; wavelength 850 nm; wireless-over-fiber system; Antenna measurements; Dynamic range; Impedance measurement; Photodiodes; Planar arrays; Radio frequency; Surface emitting lasers; Surface impedance; Throughput; Vertical cavity surface emitting lasers; Antennas; VCSELs; photodiodes; radio-over-fiber;
Journal_Title :
Lightwave Technology, Journal of
DOI :
10.1109/JLT.2007.909199