Title :
High bandwidth optical wireless network for gigabit communication
Author :
Glushko, B. ; Kin, D. ; Shar, A.
Author_Institution :
RIT Technol. Ltd., Tel-Aviv, Israel
Abstract :
A new wireless access system incorporating high bandwidth line-of-sight free space optical wireless is described and demonstrated. This system is capable of supporting several gigabits/second up-stream and down-stream data transmission and is ideally suited for high bandwidth indoor applications such as personal area networks. A simple, user friendly system of beam alignment is used between a central station and multiple local subscribers. Even within real-world office scenarios with limited mobility, alignment is performed easily. Using a modest transmitted power of only 5dBm, we demonstrate satisfactory performance of bit error rates better than 10-9 over the entire room while serving up to 8 subscribers connected to a single central station. Using simulations, the effectiveness of the proposed system architecture is investigated and the key performance trade-offs identified. Proof-of-concept experiments have also been carried that validate the simulation model. Initial experimental results successfully demonstrate that the system is capable of supporting 1-10 Gbps over a 2-6 meter bi-directional optical wireless link in an indoor environment for the first time.
Keywords :
error statistics; indoor communication; optical links; passive optical networks; wireless LAN; beam alignment; bidirectional optical wireless link; bit error rates; bit rate 1 Gbit/s to 10 Gbit/s; central station subscribers; distance 2 m to 6 m; down-stream data transmission; free space optical wireless network; gigabit communication; high bandwidth indoor applications; high bandwidth optical wireless network; multiple local subscribers; personal area networks; up-stream data transmission; user friendly system; wireless access system; Collimators; Couplings; Lenses; Optical fiber networks; Optical fibers; Optical receivers; EPON communication; gigabit network; high bandwidth indoor applications; optical data transmission; optical wireless (Wi-Fi) communication;
Conference_Titel :
Global High Tech Congress on Electronics (GHTCE), 2013 IEEE
Conference_Location :
Shenzhen
DOI :
10.1109/GHTCE.2013.6767254