ITU-T L 1201-2014 Architecture of power feeding systems of up to 400 VDC (Study Group 5)《高达400伏直流供电系统结构》.pdf
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1、 International Telecommunication Union ITU-T L.1201TELECOMMUNICATION STANDARDIZATION SECTOR OF ITU (03/2014) SERIES L: CONSTRUCTION, INSTALLATION AND PROTECTION OF CABLES AND OTHER ELEMENTS OF OUTSIDE PLANT Architecture of power feeding systems of up to 400 VDC Recommendation ITU-T L.1201 Rec. ITU-T
2、 L.1201 (03/2014) i Recommendation ITU-T L.1201 Architecture of power feeding systems of up to 400 VDC Summary Recommendation ITU-T L.1201 describes the architecture of power feeding systems of up to 400 VDC for information and communication technology (ICT) equipment in telecommunication centres, d
3、ata centres and customer premises. It describes aspects such as configuration, redundancy, power distribution and monitoring, in order to construct safe, reliable and manageable power feeding systems. It can be used also as an architecture reference model for further Recommendations e.g., on the per
4、formance of DC power feeding systems. History Edition Recommendation Approval Study Group Unique ID*1.0 ITU-T L.1201 2014-03-01 5 11.1002/1000/12135 _ *To access the Recommendation, type the URL http:/handle.itu.int/ in the address field of your web browser, followed by the Recommendations unique ID
5、. For example, http:/handle.itu.int/11.1002/1000/11830-en. ii Rec. ITU-T L.1201 (03/2014) FOREWORD The International Telecommunication Union (ITU) is the United Nations specialized agency in the field of telecommunications, information and communication technologies (ICTs). The ITU Telecommunication
6、 Standardization Sector (ITU-T) is a permanent organ of ITU. ITU-T is responsible for studying technical, operating and tariff questions and issuing Recommendations on them with a view to standardizing telecommunications on a worldwide basis. The World Telecommunication Standardization Assembly (WTS
7、A), which meets every four years, establishes the topics for study by the ITU-T study groups which, in turn, produce Recommendations on these topics. The approval of ITU-T Recommendations is covered by the procedure laid down in WTSA Resolution 1. In some areas of information technology which fall w
8、ithin ITU-Ts purview, the necessary standards are prepared on a collaborative basis with ISO and IEC. NOTE In this Recommendation, the expression “Administration“ is used for conciseness to indicate both a telecommunication administration and a recognized operating agency. Compliance with this Recom
9、mendation is voluntary. However, the Recommendation may contain certain mandatory provisions (to ensure, e.g., interoperability or applicability) and compliance with the Recommendation is achieved when all of these mandatory provisions are met. The words “shall“ or some other obligatory language suc
10、h as “must“ and the negative equivalents are used to express requirements. The use of such words does not suggest that compliance with the Recommendation is required of any party. INTELLECTUAL PROPERTY RIGHTS ITU draws attention to the possibility that the practice or implementation of this Recommen
11、dation may involve the use of a claimed Intellectual Property Right. ITU takes no position concerning the evidence, validity or applicability of claimed Intellectual Property Rights, whether asserted by ITU members or others outside of the Recommendation development process. As of the date of approv
12、al of this Recommendation, ITU had not received notice of intellectual property, protected by patents, which may be required to implement this Recommendation. However, implementers are cautioned that this may not represent the latest information and are therefore strongly urged to consult the TSB pa
13、tent database at http:/www.itu.int/ITU-T/ipr/. ITU 2014 All rights reserved. No part of this publication may be reproduced, by any means whatsoever, without the prior written permission of ITU. Rec. ITU-T L.1201 (03/2014) iii Table of Contents Page 1 Scope 1 2 References. 1 3 Definitions 2 3.1 Terms
14、 defined elsewhere 2 3.2 Terms defined in this Recommendation . 2 4 Abbreviations and acronyms 2 5 Conventions 3 5.1 Earthing configurations 3 6 Configuration of power feeding systems of up to 400 VDC 3 6.1 Basic single DC power feeding system configuration . 4 6.2 Power feeding system of up to 400
15、VDC with backup solution 4 6.3 Redundant DC power feeding configurations 5 7 Elements of power feeding systems of up to 400 VDC 8 7.1 General requirements 8 7.2 Rectifier requirements 9 7.3 Power distribution unit (PDU) requirements 10 7.4 Battery requirements 11 7.5 Distribution power line requirem
16、ents . 12 8 Monitoring power feeding systems of up to 400 VDC . 12 8.1 Configuration for monitoring . 12 8.2 Elements for monitoring . 13 8.3 Management interface and network . 13 Appendix I Example of monitoring data of DC power system. 14 Appendix II Battery performance monitoring and management 1
17、6 Appendix III Power distribution unit configuration . 17 Appendix IV Alternative rectifier configuration 19 Appendix V Configuration of power feeding systems of up to 400 VDC with renewable energy and distributed power sources. 21 Bibliography. 22 iv Rec. ITU-T L.1201 (03/2014) Introduction Power f
18、eeding systems of up to 400 VDC have been developed to cope with an increase in power consumption and equipment power density. Consideration is given to improvements in energy efficiency, as well as the reduction in greenhouse gas (GHG) emissions and raw materials. Recommendation ITU-T L.1200 specif
19、ies the up to 400 VDC interface between the power feeding system and any ICT equipment connected to it. This Recommendation specifies the architecture of up to 400 VDC power feeding systems and aims to provide a safe architecture reference for an up to 400 VDC power feeding system with reliability a
20、nd manageability adapted to suit specific requirements. One of the advantages of up to 400 VDC power feeding is that it reduces intermediate power conversion stages (e.g., the inverter and power factor compensator can be eliminated) and gives lower current usage than 48 VDC feeding, for the same pow
21、er requirement. Many papers have assessed the potential gains of using DC power feeding systems for ICT equipment in telecommunication centres, data centres and customer premises, e.g., b-CCSAYD/T 2378, b-Hirose, b-Qi, b-Marquet; these papers refer to many other references. The common range of energ
22、y saving is generally up to 15% depending on the legacy solution based on the AC UPS that is replaced, and especially if the best class of DC power feeding system is used. This saving could be applied to the 200 TWh of datacentre energy consumption assessed at the global level e.g., by the Koomey as
23、sessment b-Koomey. Improvements in reliability and availability vary between factors of 2 for a simple architecture to 20 for a full end-to-end redundant architecture; this is based on many of the papers listed in the bibliography: b-Kervarrec, b-Qiguo, b-Tsumara, b-Bauer and b-Liu. Compared to a ce
24、ntralized 48 VDC architecture, a reduction of 10% to 50% in copper usage has been precisely assessed, while for a decentralized 48VDC architecture, a reduction of 60% in battery sizes could be reached b-DC wiring design Intelec 2012. Many studies show that there is a reduction in the initial set-up
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