Title :
A high capacity metropolitan area network using lightwave transmission and time multiplexed switching
Author :
Acampora, Anthony S.
Author_Institution :
Center for Telecommun. Res., Columbia Univ., New York, NY, USA
fDate :
10/1/1990 12:00:00 AM
Abstract :
The technical feasibility of a lightwave communication system capable of providing service to thousands of subscribers within cities or large suburban areas is examined. Each subscriber in this system has available upon demand an aggregate bit rate of up to 100 Mb/s. The aggregate bit rate of the entire network is on the order of 5 Tb/s. The network topology is that of a star-on-star wherein each subscriber line terminates on one of a multitude of remote concentrators. Each high-speed link from a remote concentrator to a centrally located time-multiplexing photonic switch consists of a single-mode fiber carrying several wavelength-division multiplexed (WDM) channels. Each channel operates in a time-division multiplexed (TDM) mode at a data rate of 2 Gb/s and is powered by a multimode laser. No regeneration is required at the central switch, and at the remote concentrators, each channel is terminated by a direct-detection receiver. The approach achieves high throughput by reusing the same channels, that collectively occupy a tiny fraction of the optical band, among all interconnecting links and, with the exception of large-dimensional switch arrays, employs readily available technology
Keywords :
frequency division multiplexing; optical links; optical switches; time division multiplexing; 100 Mbit/s; 2 Gbit/s; BER; analytical models; bit error ratio; crosstalk; direct-detection receiver; high capacity network; high-speed link; lightwave communication system; lightwave transmission; metropolitan area network; network topology; optical band; remote concentrators; signal dispersion; single-mode fiber; subscriber line; time multiplexed switching; time-division multiplexed; time-multiplexing photonic switch; wavelength-division multiplexed; Aggregates; Bit rate; Cities and towns; Metropolitan area networks; Network topology; Optical arrays; Optical receivers; Optical switches; Time division multiplexing; Wavelength division multiplexing;
Journal_Title :
Communications, IEEE Transactions on