DocumentCode :
1545730
Title :
Delivery of >1 Gb/s (digital video, data, and audio) downstream in passband above the 155-Mb/s baseband services on a FTTx full service access network
Author :
Chand, Naresh ; Magill, P. ; Swaminathan, V. ; Daugherty, T.H.
Author_Institution :
Bell Labs., Lucent Technol., Murray Hill, NJ, USA
Volume :
11
Issue :
9
fYear :
1999
Firstpage :
1192
Lastpage :
1194
Abstract :
For low-cost passive optical access networks (PON), we have studied the downstream delivery of an additional >1 Gb/s in the passband above the 155-Mb/s baseband signal. Both signals are transmitted on the same fiber using a single transmitter and a single receiver within the power budgets of ITU-T G983. The passband approach offers a graceful upgrade of a 155-Mb/s baseband system, and is compatible with baseband only optical network unit (ONU). We multiplexed a 155.52-Mb/s baseband signal with QPSK modulated passband>1.2 Gb/s of broadcast DSS digital video channels in the 270-1450-MHz range through a diplexer with minimal degradation. For a passband test-signal, we used an additional 8-Mb/s QPSK modulated 860-MHz carrier. An optical to electrical (O/E) receiver using a p-i-n diode satisfies the need for class B operation as defined in ITU-T G983 (-30 dBm receiver sensitivity) for a 10/sup -10/ bit-error rate. However, an APD based receiver satisfies the power budget needs of ITU-T G983 with /spl sim/5.5 dBo margin for class C operation (-33-dBm receiver sensitivity) for both baseband and passband signals.
Keywords :
digital communication; multimedia communication; optical fibre subscriber loops; optical modulation; quadrature phase shift keying; 1 Gbit/s; 155 Mbit/s; 270 to 1450 MHz; APD based receiver; FTTx full service access network; ITU-T G983; QPSK; audio; baseband signal; bit-error rate; broadcast DSS digital video channel; class B operation; class C operation; data; degradation; digital video; diplexer; downstream delivery; low-cost passive optical access networks; optical to electrical receiver; p-i-n diode; passband; passband approach; power budget needs; Baseband; Digital modulation; Optical fiber networks; Optical network units; Optical receivers; Optical sensors; Optical transmitters; Passband; Passive optical networks; Quadrature phase shift keying;
fLanguage :
English
Journal_Title :
Photonics Technology Letters, IEEE
Publisher :
ieee
ISSN :
1041-1135
Type :
jour
DOI :
10.1109/68.784259
Filename :
784259
Link To Document :
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