ETSI TR 102 531-2007 Environmental Engineering (EE) Better determination of equipment energy consumption for improved sizing of power plant (V1 1 1)《环境工程(EE) 对改进发电厂规模用设备能量消耗的更好决定(版_1.pdf
《ETSI TR 102 531-2007 Environmental Engineering (EE) Better determination of equipment energy consumption for improved sizing of power plant (V1 1 1)《环境工程(EE) 对改进发电厂规模用设备能量消耗的更好决定(版_1.pdf》由会员分享,可在线阅读,更多相关《ETSI TR 102 531-2007 Environmental Engineering (EE) Better determination of equipment energy consumption for improved sizing of power plant (V1 1 1)《环境工程(EE) 对改进发电厂规模用设备能量消耗的更好决定(版_1.pdf(14页珍藏版)》请在麦多课文档分享上搜索。
1、 ETSI TR 102 531 V1.1.1 (2007-04)Technical Report Environmental Engineering (EE);Better determination of equipment energy consumptionfor improved sizing of power plantETSI ETSI TR 102 531 V1.1.1 (2007-04) 2 Reference DTR/EE-00003 Keywords environment, rack ETSI 650 Route des Lucioles F-06921 Sophia
2、Antipolis Cedex - FRANCE Tel.: +33 4 92 94 42 00 Fax: +33 4 93 65 47 16 Siret N 348 623 562 00017 - NAF 742 C Association but non lucratif enregistre la Sous-Prfecture de Grasse (06) N 7803/88 Important notice Individual copies of the present document can be downloaded from: http:/www.etsi.org The p
3、resent document may be made available in more than one electronic version or in print. In any case of existing or perceived difference in contents between such versions, the reference version is the Portable Document Format (PDF). In case of dispute, the reference shall be the printing on ETSI print
4、ers of the PDF version kept on a specific network drive within ETSI Secretariat. Users of the present document should be aware that the document may be subject to revision or change of status. Information on the current status of this and other ETSI documents is available at http:/portal.etsi.org/tb
5、/status/status.asp If you find errors in the present document, please send your comment to one of the following services: http:/portal.etsi.org/chaircor/ETSI_support.asp Copyright Notification No part may be reproduced except as authorized by written permission. The copyright and the foregoing restr
6、iction extend to reproduction in all media. European Telecommunications Standards Institute 2007. All rights reserved. DECTTM, PLUGTESTSTM and UMTSTM are Trade Marks of ETSI registered for the benefit of its Members. TIPHONTMand the TIPHON logo are Trade Marks currently being registered by ETSI for
7、the benefit of its Members. 3GPPTM is a Trade Mark of ETSI registered for the benefit of its Members and of the 3GPP Organizational Partners. ETSI ETSI TR 102 531 V1.1.1 (2007-04) 3 Contents Intellectual Property Rights4 Foreword.4 Introduction 4 1 Scope 7 2 References 7 3 Definitions and abbreviati
8、ons.8 3.1 Definitions8 3.2 Abbreviations .9 4 Study Design and Power Measurements 9 5 Data and Analysis.9 6 Proposal for Standardized Power Draw Values .12 7 Conclusion12 Annex A: Implications for Cooling Systems13 History 14 ETSI ETSI TR 102 531 V1.1.1 (2007-04) 4 Intellectual Property Rights IPRs
9、essential or potentially essential to the present document may have been declared to ETSI. The information pertaining to these essential IPRs, if any, is publicly available for ETSI members and non-members, and can be found in ETSI SR 000 314: “Intellectual Property Rights (IPRs); Essential, or pote
10、ntially Essential, IPRs notified to ETSI in respect of ETSI standards“, which is available from the ETSI Secretariat. Latest updates are available on the ETSI Web server (http:/webapp.etsi.org/IPR/home.asp). Pursuant to the ETSI IPR Policy, no investigation, including IPR searches, has been carried
11、out by ETSI. No guarantee can be given as to the existence of other IPRs not referenced in ETSI SR 000 314 (or the updates on the ETSI Web server) which are, or may be, or may become, essential to the present document. Foreword This Technical Report (TR) has been produced by ETSI Technical Committee
12、 Environmental Engineering (EE). The opportunity for energy reduction in telecom network systems by re-sizing power plants and battery reserves merits examination for several reasons: 1) the increasing use of broadband equipment and the move to next generation systems; 2) the increasing sophisticati
13、on of rectification equipment; 3) the increasing sophistication of control software; 4) pressure to utilize alternate energy sources. This paper posits that better data on DC power consumption of equipment can assist in using power plant equipment at its most efficient loading. The difference in des
14、ign point and operating conditions is especially wide for radio frequency equipment and potentially for next generation IP based systems as well. Hence, mobility equipment is used as an example of the savings attainable if operators had access to more precise and specific power consumption data. The
15、 proposal to use power plant equipment more efficiently offers a cost effective way to conserve energy resources. Introduction Telecom Network Operators have expressed great concern about the energy costs associated with the operation of their telecommunications networks 1, 2. In parallel European a
16、nd US bodies such as the EUs Joint Research Centre and the US Department of Energy are considering ways to legislate energy saving features and efficiency targets into broadband equipment 3, 7. In addition, energy consumption during the customer use phase has been identified as the aspect with great
17、est environmental impact (global warming from electric utility greenhouse gas emissions) during the product lifecycle of a piece of broadband network infrastructure equipment 8, 9.Historically, power plants for Network Infrastructure Equipment have been sized at the same power draw as protection equ
18、ipment such as AC breakers. This same maximum figure was then used to estimate yearly energy usage and battery backup resulting in an overestimate of power consumption. Plants were also sized for growth. This was appropriate when the industry emphasized robust design and had a centralized telecom in
19、frastructure design. More recent trends require that the telecom industry re-examine how power is sized to see if efficiencies can be gained. Examples of these trends include: 1) the development of broadband technologies; 2) advances in shelf power management; 3) the move to highly distributed telec
20、om networks with smaller modular power supplies closer to the datacom equipment; 4) improvements in rectifier designs and the Code of Conduct for Uninteruptable Power Supplies 10. ETSI ETSI TR 102 531 V1.1.1 (2007-04) 5 Older DC power systems can be greatly improvement by adding automatic functional
21、ity into the supervisory control system, without hardware replacement 11. Another motivation for taking a more aggressive approach to power management is that the number of batteries required for a given amount of battery backup is reduced. This gives one more area for improvement in the carbon emis
22、sions data telecom companies are asked to provide 12. Designing a distributed network of information infrastructure equipment usually involves standardizing on a particular size of power and battery plan in order to streamline ordering and installation. A one-size-fits-all scheme invites excess cons
23、ervatism. One of the advances for classic wireline products (access equipment, POTS service, switching, etc.) is in shelf power management. Shelf units receive distributed power along with thermal management. In standardized architectures such as ATCA, the shelf controller provides this function. Ma
24、ny proprietary designs have the same function available. It is a short step from this to system configuration that can be set up to spread traffic load across cards providing better options for thermal management, system life and energy savings. Broadband equipment such as wireless base station equi
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