DocumentCode :
80363
Title :
A Low-Energy Rate-Adaptive Bit-Interleaved Passive Optical Network
Author :
Suvakovic, Dusan ; Hungkei Chow ; Anthapadmanabhan, N. Prasanth ; van Veen, Doutje T. ; van Wijngaarden, Adriaan J. ; Ayhan, Tuba ; Van Praet, C. ; Torfs, G. ; Xin Yin ; Vetter, Peter
Author_Institution :
Bell Labs., Alcatel-Lucent, Murray Hill, NJ, USA
Volume :
32
Issue :
8
fYear :
2014
fDate :
Aug. 2014
Firstpage :
1552
Lastpage :
1565
Abstract :
Energy consumption of customer premises equipment (CPE) has become a serious issue in the new generations of time-division multiplexing passive optical networks, which operate at 10 Gb/s or higher. It is becoming a major factor in global network energy consumption, and it poses problems during emergencies when CPE is battery-operated. In this paper, a low-energy passive optical network (PON) that uses a novel bit-interleaving downstream protocol is proposed. The details about the network architecture, protocol, and the key enabling implementation aspects, including dynamic traffic interleaving, rate-adaptive descrambling of decimated traffic, and the design and implementation of a downsampling clock and data recovery circuit, are described. The proposed concept is shown to reduce the energy consumption for protocol processing by a factor of 30. A detailed analysis of the energy consumption in the CPE shows that the interleaving protocol reduces the total energy consumption of the CPE significantly in comparison to the standard 10 Gb/s PON CPE. Experimental results obtained from measurements on the implemented CPE prototype confirm that the CPE consumes significantly less energy than the standard 10 Gb/s PON CPE.
Keywords :
energy consumption; optical fibre networks; passive optical networks; protocols; telecommunication power management; time division multiplexing; bit interleaved passive optical network; bit interleaving downstream protocol; data recovery circuit; downsampling clock; dynamic traffic interleaving; energy consumption; low energy passive optical network; protocol processing; rate adaptive decimated traffic descrambling; rate adaptive passive optical network; time division multiplexing; Clocks; Energy consumption; Passive optical networks; Payloads; Protocols; Standards; Synchronization; Optical fiber networks; access protocols; green design; power dissipation; time-division multiplexing;
fLanguage :
English
Journal_Title :
Selected Areas in Communications, IEEE Journal on
Publisher :
ieee
ISSN :
0733-8716
Type :
jour
DOI :
10.1109/JSAC.2014.2335331
Filename :
6848833
Link To Document :
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