Title :
Key technologies for a coherent optical trunk line system
Author :
Yamazaki, Shuntaro ; Noda, Arihide ; Ono, Takashi ; Shiozawa, Takahiro ; Tanabe, Takashi ; Shimizu, Haruhito ; Kitamura, Mitsuhiro
Author_Institution :
NEC Corp., Kanagawa, Japan
Abstract :
A high capacity continuous phase frequency shift keying (CPFSK) heterodyne transmission system is proposed from the components point of view. In the coherent trunk line system, reliability, compactness and high sensitivity are important characteristics to achieve a practical system. To realize such characteristics, the authors developed several key components, such as a compact frequency distributed-feedback laser diode package, a reliable filter squeezer polarization controller, a novel dual-PIN high electron mobility transistor receiver, an efficient chromatic dispersion equalizer, and an intelligent frequency controller. By applying these components to a 2.5 Gb/s CPFSK transmission system, -47 dBm receiver sensitivity and stable operation in 764 km normal dispersion fiber transmission were achieved. This high sensitivity value and a long span transmission capability will be effective for both transmission capacity upgrades with frequency division multiplexing (FDM) and also for transmission span expansion with optical amplifier repeaters
Keywords :
frequency shift keying; light coherence; optical communication equipment; optical links; 2.5 Gbit/s; 764 km; CPFSK; FDM; chromatic dispersion equalizer; coherent optical trunk line system; continuous phase frequency shift keying; dispersion fiber transmission; dual-PIN high electron mobility transistor receiver; filter squeezer polarization controller; frequency distributed-feedback laser diode package; frequency division multiplexing; heterodyne transmission system; high sensitivity; intelligent frequency controller; long span transmission; optical amplifier repeaters; reliability; Diode lasers; Frequency division multiplexing; Frequency shift keying; Optical control; Optical filters; Optical mixing; Optical receivers; Optical sensors; Packaging; Polarization;
Conference_Titel :
Communications, 1992. ICC '92, Conference record, SUPERCOMM/ICC '92, Discovering a New World of Communications., IEEE International Conference on
Conference_Location :
Chicago, IL
Print_ISBN :
0-7803-0599-X
DOI :
10.1109/ICC.1992.268188