1、 IEEE Standard for Radio Interface for White Space Dynamic Spectrum Access Radio Systems Supporting Fixed and Mobile Operation Sponsored by the Dynamic Spectrum Access Networks Standards Committee IEEE 3 Park Avenue New York, NY 10016-5997 USA IEEE Communications Society IEEE Std 1900.7-2015IEEE Std
2、 1900.7-2015 IEEE Standard for Radio Interface for White Space Dynamic Spectrum Access Radio Systems Supporting Fixed and Mobile Operation Sponsor Dynamic Spectrum Access Networks Standards Committee of the IEEE Communications Society Approved 5 December 2015 IEEE-SA Standards Board Abstract: A radi
3、o interface including medium access control sublayer and physical layer of white space dynamic spectrum access radio systems supporting fixed and mobile operation in white space frequency bands, while avoiding causing harmful interference to incumbent users in these frequency bands is specified in t
4、his standard. Keywords: IEEE 1900.7, medium access control sublayer, physical layer, radio interface, white space The Institute of Electrical and Electronics Engineers, Inc. 3 Park Avenue, New York, NY 10016-5997, USA Copyright 2016 by The Institute of Electrical and Electronics Engineers, Inc. All
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33、determination of 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. Copyright 2016 IEEE. All rights reserved. vi Participants At the time this IEEE standard was
34、 completed, the 1900.7 Working Group had the following membership: Stanislav Filin, Chair Oliver Holland, Vice Chair Vinh-Dien Hoang, Technical Editor Muhammad Shakir, Secretary Muhammad Aljuaid Jean-Baptiste Dor Ignatius Lee Sajeev Manikkoth Baher Mawlawi Dominique Noguet R. Venkatesha Prasad The f
35、ollowing members of the individual balloting committee voted on this standard. Balloters may have voted for approval, disapproval, or abstention. Iwan Adhicandra Thomas Alexander Tuncer Baykas Bernd Bochow William Carney Juan Carreon Yesenia Cevallos Suresh Channarasappa Keith Chow Todor Cooklev Ric
36、hard Edgar Charles Einolf Marc Emmelmann Stanislav Filin Avraham Freedman Yue Gao Alexander Gelman Tim Godfrey Randall Groves Michael Gundlach William Hayes Marco Hernandez Werner Hoelzl Oliver Holland Tetsushi Ikegami Noriyuki Ikeuchi Sergiu Iordanescu Atsushi Ito Raj Jain Adri Jovin Toru Kabe Piot
37、r Karocki Stuart Kerry Adrian Kliks Fumihide Kojima Bruce Kraemer Paul Lambert Roger Marks Jeffery Masters Edward McCall Nabil Nasser Michael Newman Alexandros Nikitas Paul Nikolich Dominique Noguet John Notor Satoshi Oyama Arumugam Paventhan Clinton Powell R. Venkatesha Prasad Maximilian Riegel Ben
38、jamin Rolfe M. K. Sajeev Naotaka Sato Bartien Sayogo Thomas Starai Walter Struppler Michael Swearingen Tuna Tugcu Mark-Rene Uchida Cornelis VanPuijenbroek Dmitri Varsanofiev John Vergis Gabriel Villardi Hung-Yu Wei Robert Weller Andreas Wolf Oren Yuen Copyright 2016 IEEE. All rights reserved. vii Wh
39、en the IEEE-SA Standards Board approved this standard on 5 December 2015, it had the following membership: John D. Kulick, Chair Jon Walter Rosdahl, Vice Chair Richard H. Hulett, Past Chair Konstantinos Karachalios, Secretary Masayuki Ariyoshi Ted Burse Stephen Dukes Jean-Philippe Faure J. Travis Gr
40、iffith Gary Hoffman Michael Janezic Joseph L. Koepfinger* David J. Law Hung Ling Andrew Myles T. W. Olsen Glenn Parsons Ronald C. Petersen Annette D. Reilly Stephen J. Shellhammer Adrian P. Stephens Yatin Trivedi Phillip Winston Don Wright Yu Yuan Daidi Zhong *Member Emeritus Copyright 2016 IEEE. Al
41、l rights reserved. viii Introduction This introduction is not part of IEEE Std 1900.7-2015, IEEE Standard for Radio Interface for White Space Dynamic Spectrum Access Radio Systems Supporting Fixed and Mobile Operation. This standard specifies a radio interface including medium access control sublaye
42、r and physical layer of white space dynamic spectrum access radio systems supporting fixed and mobile operation in white space frequency bands, while avoiding causing harmful interference to incumbent users in these frequency bands. This standard enables the development of cost-effective, multi-vend
43、or white space dynamic spectrum access radio systems capable of interoperable operation in white space frequency bands on a non-interfering basis to incumbent users in these frequency bands. Copyright 2016 IEEE. All rights reserved. ix Contents 1. Overview 1 1.1 Scope . 1 1.2 Purpose 1 2. Definition
44、s, acronyms, and abbreviations 2 2.1 Definitions . 2 2.2 Acronyms and abbreviations . 2 3. Reference model . 3 4. MAC sublayer 4 4.1 Architecture of the MAC sublayer . 4 4.2 Type definition 4 4.3 MAC frame formats . 4 4.4 MAC sublayer service specification 9 4.5 MAC functional description 24 5. PHY
45、layer . 37 5.1 PHY layer service specification . 37 5.2 CRC method 42 5.3 Channel coding (including interleaving and modulation) 42 5.4 Mapping modulated symbols to carriers 47 5.5 Transmitter requirements . 53 Annex A (informative) Coexistence considerations . 55 Copyright 2016 IEEE. All rights res
46、erved. 1 IEEE Standard for Radio Interface for White Space Dynamic Spectrum Access Radio Systems Supporting Fixed and Mobile Operation IMPORTANT NOTICE: IEEE Standards documents are not intended to ensure safety, security, health, or environmental protection, or ensure against interference with or f
47、rom other devices or networks. Implementers of IEEE Standards documents are responsible for determining and complying with all appropriate safety, security, environmental, health, and interference protection practices and all applicable laws and regulations. This IEEE document is made available for
48、use subject to important notices and legal disclaimers. These notices and disclaimers appear in all publications containing this document and may be found under the heading “Important Notice” or “Important Notices and Disclaimers Concerning IEEE Documents.” They can also be obtained on request from
49、IEEE or viewed at http:/standards.ieee.org/IPR/disclaimers.html. 1. Overview 1.1 Scope This standard specifies a radio interface including medium access control (MAC) sublayer(s) and physical (PHY) layer(s) of white space dynamic spectrum access radio systems supporting fixed and mobile operation in white space frequency bands, while avoiding causing harmful interference to incumbent users in these frequency bands. 1.2 Purpose This standard enables the development of cost-effective, multi-vendor white space dynamic spectrum access radio systems capable of interoperable o