The QoS provisioning tri-mode energy saving mechanism for EPON networks

被引:0
作者
Chien-Ping Liu
Ho-Ting Wu
Kai-Wei Ke
机构
[1] National Taipei University of Technology,Department of Computer Science and Information Engineering
来源
Photonic Network Communications | 2017年 / 33卷
关键词
EPON; Tri-mode; Energy saving; QoS; Doze mode; Asymmetric data flow;
D O I
暂无
中图分类号
学科分类号
摘要
The Ethernet passive optical network provides broadband Internet access but also consumes a lot of energy. Energy saving mechanisms using the dual-mode—Active and Sleep modes—design for optical network unit (ONU) in EPON still suffer unnecessary energy consumption, especially in asymmetric data flow such as video streaming downloading service. The Doze mode is particularly suitable for handling the asymmetric data flow since it allows the ONU’s transmitter to turn off while turning on its receiver to receive data from optical line termination (OLT). However, adding Doze mode into original dual-mode design incur a greater challenge for OLT to identify the current status of the ONU since the ONU cannot transmit any upstream message to OLT at either Doze or Sleep mode. In this paper, we propose a new QoS provisioning tri-mode energy saving scheme, by integrating the Doze mode into original dual-mode design, to allow the ONU to switch to one of the energy saving modes whenever no upstream traffic exists. A high-priority upstream packet, arriving at ONU of energy saving modes, is able to trigger the ONU back to Active mode for QoS provisioning purpose. Performance evaluation via simulation has demonstrated the effectiveness of such mechanism in various asymmetric data flow. Furthermore, we propose two additional enhanced approaches to increase the energy saving effects by deferring the triggering action of the high-priority upstream packet as well as coalescing new arrival packets during waiting time into the same scheduling cycle.
引用
收藏
页码:26 / 38
页数:12
相关论文
共 26 条
[1]  
Kubo R(2010)Adaptive power saving mechanism for 10 Gigabit class PON systems IEICE Trans. Commun. E93–B 280-288
[2]  
Kani J(2012)Efficient PON with sleep-mode ONU: progress, challenges, and solutions IEEE Netw. Mag. 26 36-41
[3]  
Fujimoto Y(2003)A bandwidth guaranteed polling MAC protocol for Ethernet passive optical network Proc. IEEE INFOCOM 1 22-31
[4]  
Yoshimoto N(2003)Dual DEB-GPS scheduler for delay-constraint applications in Ethernet passive optical networks IECE Trans. Commun. E86–B 1575-1584
[5]  
Kumozaki K(2002)Dynamic bandwidth allocation algorithm for multimedia services over Ethernet PONs ETRI J. 24 465-468
[6]  
Shi L(2003)Dynamic bandwidth allocation for quality-of-service over Ethernet PONs IEEE JSAC 21 1467-1477
[7]  
Ma M(2014)Multi-power-level energy saving management for passive optical networks J. Opt. Commun. Netw. 6 965-973
[8]  
Zhu Y(2012)Energy-efficient PON with sleep-mode ONU: progress, challenges, and solutions IEEE Netw. 26 36-41
[9]  
Cheng T(2013)On the use of the doze mode to reduce power consumption in EPON systems J. Lightwave Technol. 32 285-292
[10]  
Zhang L(2011)Dynamic sleep-mode ONU with self-sustained fast-lock CDR IC for burst-mode power saving in 10 G-EPON systems IEEE Photonics Technol. Lett. 23 1796-1798