Owing to the growing demand for bandwidth-hungry video-on-demand applications, Passive Optical Network (PON) has been widely considered as one of the most promising solutions for broadband access. Environmental concerns motivated network designers to lower energy consumption of optical access networks. A well-known approach to reduce energy consumption is to allow network elements to switch to the sleep mode. In this framework, an improved Optical network Unit (ONU) architecture in TDM-PON is proposed to reduce the handover time of status switching. Energy-saving performances of current and improved architectures are compared in different scenarios. The simulation results show that by applying a proper sleep mode mechanism, the improved arc...
Energy consumption of ICT (Information and communication Technology) is emerging with tremendous cha...
The continuously increasing bandwidth demand of information and communication technology (ICT) is le...
Energy efficiency is of a vital significance in the design of next generation time and wavelength di...
Due to increasing bandwidth demands from users, this evolution towards next generation PON (NG-PON) ...
Due to massive expansion of Information and Communication Technology sector, the power consumption o...
International audienceNowadays Passive Optical Network (PON) requires that Optical Network Units (ON...
This article discusses novel approaches to improve energy efficiency of different optical access tec...
With the increasing concern over the energy expenditure due to rapid ICT expansion and growth of Int...
Energy consumption of customer premises equipment (CPE) has become a serious issue in the new genera...
© 2016 Dr. Maluge Pubuduni Imali DiasThe popularity of bandwidth-intensive applications and the depl...
With the remarkable growth of fiber-based services, the number of FTTx subscribers has been dramatic...
The optical network unit (ONU), installed at a customer's premises, accounts for about 60% of power ...
In passive optical network (PON), in addition to efficient bandwidth management, a dynamic bandwidth...
Recent IEEE and ITU-T standards for TDM-Passive Optical Network (TDM-PON) with sleep mode recommend ...
Passive optical networks are currently the major contributor to fixed optical networks...
Energy consumption of ICT (Information and communication Technology) is emerging with tremendous cha...
The continuously increasing bandwidth demand of information and communication technology (ICT) is le...
Energy efficiency is of a vital significance in the design of next generation time and wavelength di...
Due to increasing bandwidth demands from users, this evolution towards next generation PON (NG-PON) ...
Due to massive expansion of Information and Communication Technology sector, the power consumption o...
International audienceNowadays Passive Optical Network (PON) requires that Optical Network Units (ON...
This article discusses novel approaches to improve energy efficiency of different optical access tec...
With the increasing concern over the energy expenditure due to rapid ICT expansion and growth of Int...
Energy consumption of customer premises equipment (CPE) has become a serious issue in the new genera...
© 2016 Dr. Maluge Pubuduni Imali DiasThe popularity of bandwidth-intensive applications and the depl...
With the remarkable growth of fiber-based services, the number of FTTx subscribers has been dramatic...
The optical network unit (ONU), installed at a customer's premises, accounts for about 60% of power ...
In passive optical network (PON), in addition to efficient bandwidth management, a dynamic bandwidth...
Recent IEEE and ITU-T standards for TDM-Passive Optical Network (TDM-PON) with sleep mode recommend ...
Passive optical networks are currently the major contributor to fixed optical networks...
Energy consumption of ICT (Information and communication Technology) is emerging with tremendous cha...
The continuously increasing bandwidth demand of information and communication technology (ICT) is le...
Energy efficiency is of a vital significance in the design of next generation time and wavelength di...