IEEE 1900 5 2-2017 en Method for Modeling Spectrum Consumption.pdf

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1、 IEEE Standard for Method for Modeling Spectrum Consumption Sponsored by the Dynamic Spectrum Access Networks Standards Committee IEEE 3 Park Avenue New York, NY 10016-5997 USA IEEE Communications Society IEEE Std 1900.5.2-2017 IEEE Std 1900.5.2-2017 IEEE Standard for Method for Modeling Spectrum Co

2、nsumption Sponsor Dynamic Spectrum Access Networks Standards Committee of the IEEE Communications Society Approved 6 December 2017 IEEE-SA Standards Board 2 Copyright 2018 IEEE. All rights reserved. Abstract: A vendor-independent generalized method for modeling spectrum consumption of any type of us

3、e of radio frequency spectrum and the attendant computations for arbitrating the compatibility among models are defined in this standard. The methods of modeling are chosen to support the development of tractable algorithms for determining the compatibility between models and for performing various

4、spectrum management tasks that operate on a plurality of models. The modeling methods are exclusively focused on capturing spectrum use but are defined in a schema that can be joined with other schemata related to spectrum management. Keywords: DSA, dynamic spectrum access, IEEE 1900.5.2, SCM, spect

5、rum consumption model The Institute of Electrical and Electronics Engineers, Inc. 3 Park Avenue, New York, NY 10016-5997, USA Copyright 2018 by The Institute of Electrical and Electronics Engineers, Inc. All rights reserved. Published 26 June 2018. Printed in the United States of America. IEEE is a

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23、o photocopy portions of any individual standard for company or organizational internal use or individual, noncommercial use only. To arrange for payment of licensing fees, please contact Copyright Clearance Center, Customer Service, 222 Rosewood Drive, Danvers, MA 01923 USA; +1 978 750 8400. Permiss

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26、en in effect. Every IEEE standard is subjected to review at least every ten years. When a document is more than ten years old and has not undergone a revision process, it is reasonable to conclude that its contents, although still of some value, do not wholly reflect the present state of the art. Us

27、ers are cautioned to check to determine that they have the latest edition of any IEEE standard. In order to determine whether a given document is the current edition and whether it has been amended through the issuance of amendments, corrigenda, or errata, visit the IEEE-SA Website at http:/ieeexplo

28、re.ieee.org/xpl/standards.jsp or contact IEEE at the address listed previously. For more information about the IEEE SA or IEEEs standards development process, visit the IEEE-SA Website at http:/standards.ieee.org. Errata Errata, if any, for all IEEE standards can be accessed on the IEEE-SA Website a

29、t the following URL: http:/standards.ieee.org/findstds/errata/index.html. Users are encouraged to check this URL for errata periodically. Patents Attention is called to the possibility that implementation of this standard may require use of subject matter covered by patent rights. By publication of

30、this standard, no position is taken by the IEEE with respect to the existence or validity of any patent rights in connection therewith. If a patent holder or patent applicant has filed a statement of assurance via an Accepted Letter of Assurance, then the statement is listed on the IEEE-SA Website a

31、t http:/standards.ieee.org/about/sasb/patcom/patents.html. Letters of Assurance may indicate whether the Submitter is willing or unwilling to grant licenses under patent rights without compensation or under reasonable rates, with reasonable terms and conditions that are demonstrably free of any unfa

32、ir discrimination to applicants desiring to obtain such licenses. Essential Patent Claims may exist for which a Letter of Assurance has not been received. The IEEE is not responsible for identifying Essential Patent Claims for which a license may be required, for conducting inquiries into the legal

33、validity or scope of Patents Claims, or determining whether any licensing terms or conditions provided in connection with submission of a Letter of Assurance, if any, or in any licensing agreements are reasonable or nondiscriminatory. Users of this standard are expressly advised that determination o

34、f the validity of any patent rights, and the risk of infringement of such rights, is entirely their own responsibility. Further information may be obtained from the IEEE Standards Association. 6 Copyright 2018 IEEE. All rights reserved. Participants At the time this standard was submitted to the IEE

35、E-SA Standards Board for approval, the Policy Language and Architectures for Managing Cognitive Radio for Dynamic Spectrum Access Applications Working Group had the following membership: Matthew Sherman, Chair Darcy Swain-Walsh, Vice Chair C. Caicedo Bastidas, Secretary John Stine, Editor David Ches

36、ter Colby Harper Nilesh Khamberkar Mieczyslaw Kokar Yuriy Posherstnik Venkatesha Prasad Tony Rennier Sam Schmitz Reinhard Schrage The following members of the individual balloting committee voted on this standard. Balloters may have voted for approval, disapproval, or abstention. Iwan Adhicandra Tho

37、mas Alexander Stefan Aust H. Stephen Berger Harry Bims Nancy Bravin C. Caicedo Bastidas William Carney Juan Carreon Yesenia Cevallos Minho Cheong David Chester Keith Chow Charles Cook Todor Cooklev Yezid Donoso Richard Edgar Robert Fish Avraham Freedman Alexander Gelman James Gilb Tim Godfrey Randal

38、l Groves Michael Gundlach Colby Harper William Hayes Marco Hernandez Werner Hoelzl Tetsushi Ikegami Noriyuki Ikeuchi Atsushi Ito Raj Jain Adri Jovin Toru Kabe Stuart Kerry Nilesh Khambekar Chad Kiger Adrian Kliks Mieczyslaw Kokar Bruce Kraemer Paul Lambert Kin Hong Lee Arthur H. Light Michael Lynch

39、Syam Madanapalli Roger Marks Jeffery Masters Edward McCall Michael McInnis Apurva Mody Michael Newman Satoshi Oyama Arumugam Paventhan Clinton Powell Venkatesha Prasad James Reilly Maximilian Riegel Benjamin Rolfe M. K. Sajeev Bartien Sayogo Sam Schmitz Reinhard Schrage Stephen Schwarm Matthew Sherm

40、an Ju-Hyung Son Thomas Starai John Stine Walter Struppler Mark Sturza Darcy Swain-Walsh Steven Tilden Tuna Tugcu Mark-Rene Uchida Lorenzo Vangelista John Vergis Khurram Waheed Lisa Ward Hung-Yu Wei Andreas Wolf Oren Yuen 7 Copyright 2018 IEEE. All rights reserved. When the IEEE-SA Standards Board ap

41、proved this standard on 6 December 2017, it had the following membership: Jean-Philippe Faure Chair Gary Hoffman, Vice Chair John D. Kulick, Past Chair Konstantinos Karachalios, Secretary Chuck Adams Masayuki Ariyoshi Ted Burse Stephen Dukes Doug Edwards J. Travis Griffith Michael Janezic Thomas Koc

42、hy Joseph L. Koepfinger* Kevin Lu Daleep Mohla Damir Novosel Ronald C. Petersen Annette D. Reilly Robby Robson Dorothy Stanley Adrian Stephens Mehmet Ulema Phil Wennblom Howard Wolfman Yu Yuan *Member Emeritus 8 Copyright 2018 IEEE. All rights reserved. Introduction This introduction is not part of

43、IEEE Std 1900.5.2-2017, IEEE Standard for Method for Modeling Spectrum Consumption. This document is the first complete standard to define a generalized method for modeling spectrum consumption of any type of use of radio frequency spectrum and the attendant computations for arbitrating the compatib

44、ility among models. The methods of modeling are chosen to support the development of tractable algorithms for determining the compatibility between models and for performing various spectrum management tasks that operate on a plurality of models. The modeling methods are exclusively focused on captu

45、ring spectrum use to support the determination of compatibility as opposed to being a data standard that seeks to support a particular business process of spectrum management. This standard defines the data requirement for spectrum consumption models. The data elements and their meaning are the crit

46、ical parts of the modeling and may be expressed by any data schema if content and context are preserved. 9 Copyright 2018 IEEE. All rights reserved. Contents 1. Overview 13 1.1 Scope . 13 1.2 Purpose 13 2. Normative references 14 3. Definitions, acronyms, and abbreviations 14 3.1 Word usage 14 3.2 D

47、efinitions . 14 3.3 Acronyms and abbreviations . 15 3.4 Symbols . 16 4. Data conventions 19 5. Purpose and use of SCMs . 19 5.1 General 19 5.2 Capturing spectrum use of RF devices 20 5.3 Capturing spectrum use of RF systems 20 5.4 Model-based spectrum management (MBSM) 20 5.4.1 General . 20 5.4.2 Lo

48、ose coupling spectrum management 20 5.4.3 Independent modeling of RF systems 22 5.4.4 Common methods for arbitrating compatibility of models 22 5.5 Radio spectrum use policy . 22 6. Spectrum-dependent devices, systems, and sets . 23 6.1 General 23 6.2 Spectrum-dependent devices . 23 6.2.1 General .

49、23 6.2.2 Transmitter models 23 6.2.3 Receiver models . 24 6.3 System models . 24 6.4 SCM sets 24 6.5 SCM messages and data 24 7. Special data structures 26 7.1 General 26 7.2 Specifying confidence . 26 7.3 Specifying values by direction . 27 7.4 Spectral masks . 29 8. Modeling constructs . 29 8.1 General 29 8.2 Reference Power 30 8.2.1 General . 30 8.2.2 Purpose and use 30 8.2.3 Data elements and their meaning . 30 8.2.4 Modeling requirement 31 8.3 Spectrum mask 31 8.3.1 Purpose and use 31 8.3.2 Data elements and their meaning . 32 8.3.3 Modeling requirement 35 10 Copy

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