Energy-efficient communication networks for improved global energy productivity

被引:0
作者
Slaviša Aleksić
机构
[1] Vienna University of Technology,Institute of Telecommunications
来源
Telecommunication Systems | 2013年 / 54卷
关键词
Energy efficiency; Power consumption; Network elements; Core networks; Access networks; Holistic approach;
D O I
暂无
中图分类号
学科分类号
摘要
Recently, a lot of effort has been put into research and development of energy-efficient devices and systems and into optimization of the network infrastructure with regard to energy consumption. On the one hand, reducing total power consumption of global communication networks has become an imperative and an important step towards the future highly energy-efficient Internet. On the other hand, capacity and performance of the Internet must be continuously improved in order to meet the high requirements set by the continuously increasing of both the number of broadband subscribers and the amount of user traffic. Thus, only a highly energy-efficient and high-performance network infrastructure designed to efficiently support advanced applications and services for improving energy productivity in many other branches of business and society can significantly contribute to global energy savings. This paper briefly discusses potentials and options for achieving such an energy-efficient network infrastructure. Some examples of software applications and services for global energy savings are briefly reviewed. The aim of this paper is to draw attention to the need for a holistic approach to evaluate energy efficiency and to improve the global energy productivity through the use of high-performance and energy-efficient networks, services and applications.
引用
收藏
页码:183 / 199
页数:16
相关论文
共 48 条
[1]  
Aleksić S.(2009)Analysis of power consumption in future high-capacity network nodes IEEE/OSA Journal of Optical Communications and Networking 1 245-258
[2]  
Aleksić S.(2011)Energy efficiency of electronic and optical network elements, invited IEEE Journal of Selected Topics in Quantum Electronics 17 296-308
[3]  
Tucker R. S.(2006)The role of optics and electronics in high-capacity routers IEEE Journal of Lightwave Technology 24 4655-4673
[4]  
Yano M.(2005)Optical MEMS for photonic switching—compact and stable optical crossconnect switches for simple, fast, and flexible wavelength applications in recent photonic networks IEEE Journal on Selected Tropics in Quantum Electronics 11 383-394
[5]  
Yamagishi F.(2011)Powering Internet with power-law networking Telecommunications Systems 48 63-75
[6]  
Tsuda T.(2011)Sleeping link selection for energy-efficient GMPLS networks Journal of Lightwave Technology 29 2292-2298
[7]  
Norros I.(2002)Packet-level traffic measurements from the sprint IP backbone IEEE Network 17 6-16
[8]  
Flinck H.(2001)Generalized multiprotocol label switching: an overview of signaling enhancements and recovery techniques IEEE Communications Magazine 39 144-151
[9]  
Cerutti I.(2002)TCP switching: exposing circuits to IP IEEE MICRO 22 82-89
[10]  
Sambo N.(2005)Scalable performance evaluation of a hybrid optical switch IEEE Journal of Lightwave Technology 23 2961-2973