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IEEE 1887-2017 en Guide for Wayside Energy Storage Systems for DC Traction Applications (IEEE Computer Society).pdf

1、IEEE Guide for Wayside Energy Storage Systems for DC Traction Applications IEEE Std 1887-2017 IEEE Vehicular Technology Society Sponsored by the Rail Transportation Standards Committee IEEE 3 Park Avenue New York, NY 10016-5997 USAIEEE Std 1887-2017 IEEE Guide for Wayside Energy Storage Systems for

2、DC Traction Applications Sponsor Rail Transportation Standards Committee of the IEEE Vehicular Technology Society Approved 14 February 2017 IEEE-SA Standards BoardAbstract: Traction power systems experience some of the most extreme variations in local power loads as compared to most other large scal

3、e electric power supply networks. These variations create challenges in the construction of reliable electric power delivery systems and in the perfor- mance of the rolling stock dependent on power supplied by the system. A solution is offered by en- ergy storage by smoothing out these power variati

4、ons, absorbing energy as system voltage rises, and delivering energy as voltage drops. Engineers are helped by this guide to identify where these solutions can provide the greatest benefits, design solutions with the greatest impact, and quantify the costs and benefits of deploying new solutions. Ke

5、ywords: dc traction, energy recovery, energy storage, fixed guideway transportation, IEEE 1887, railway, traction power, wayside energy storage, wayside energy storage system The Institute of Electrical and Electronics Engineers, Inc. 3 Park Avenue, New York, NY 10016-5997, USA Copyright 2017 by The

6、 Institute of Electrical and Electronics Engineers, Inc. All rights reserved. Published 24 March 2017. Printed in the United States of America. IEEE is a registered trademark in the U.S. Patent fitness for a particular purpose; non-infringement; and quality, accuracy, effectiveness, currency, or com

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35、tion may be obtained from the IEEE Standards Association.6 Copyright 2017 IEEE. All rights reserved. Participants At the time this IEEE guide was completed, the Wayside Energy Storage Systems Working Group had the following membership: Salwa Fouda, Chair Suresh ShrimavleKen Nutt, Vice Chair Roger M.

36、 A very Steve Bezner Gustavo Cevallos John Fish Paul Forquer Mike Hanratty Simon Hetherington Todd Hollett John John Andrew Jones Xin Li Yiman Mohammed Michael Natenzon Maurizio Ponzetto Jacques Poulin Patrick Savoie Ralph (Benjamin) Stell Raymond Strittmatter Gary Touryan Donald Wiles Robert Wilson

37、 Judy Wu Tom Young Gordon Yui The following members of the individual balloting committee voted on this guide. Balloters may have voted for approval, disapproval, or abstention. Roger M. A very William Aycock Bill Brown John Fish Robert Fisher Paul Forquer Salwa Fouda H. Glickenstein Randall Groves

38、Simon Hetherington Werner Hoelzl John John Andrew Jones Walter Keevil Yuri Khersonsky Ethan Kim Thomas Kurihara Yung-chiang Lee Vishwanath Mawley Michael Newman Chris Pagni David R. Phelps Moises Ramos Richard Rohr Osman Sakr Shakti Sarai Nikunj Shah Xu She Suresh Shrimavle Jeffrey Sisson Ralph (Ben

39、jamin) Stell Rick Straubel Raymond Strittmatter Brandon Swartley Gary Touryan David Turner John Vergis David Walker Jeffrey Wharton Robert Wilson Jian Yu Matthew Zeedyk When the IEEE-SA Standards Board approved this guide on 14 February 2017, it had the following membership: Jean-Philippe Faure, Cha

40、ir Ted Burse, Vice Chair John D. Kulick, Past Chair Konstantinos Karachalios, Secretary Chuck Adams Masayuki Ariyoshi Stephen Dukes Jianbin Fan J. Travis Griffith Gary Hoffman Ronald W. Hotchkiss Michael Janezic Joseph L. Koepfinger* Hung Ling Kevin Lu Annette D. Reilly Gary Robinson Mehmet Ulema Yi

41、ngli Wen Howard Wolfman Don Wright Yu Yuan Daidi Zhong *Member Emeritus7 Copyright 2017 IEEE. All rights reserved. Introduction This introduction is not part of IEEE Std 1887-2017, IEEE Guide for Wayside Energy Storage Systems for DC Trac- tion Applications. This introduction provides background on

42、the rationale used to develop this guide, which may aid in the understanding of the application of wayside energy storage. The need for economic consideration and perfor- mance metrics to assist in the development of energy storage systems is discussed. The importance of safety and environmental con

43、cerns and the integration of energy storage into existing operating rail systems and their introduction as part of a new rail system are discussed. Means of simulating operation and integration for the objective of optimization are also discussed. The following topics are covered: normative references, defini- tions, applications, common technologies, common topologies, specifying a wayside energy storage system, economic considerations, modeling and simulation of energy storage, performance, safety and environment, installation and integration, and verification and validation.

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