IEEE 802 22B-2015 en Information Technology-Telecommunications and information exchange between systems Wireless Regional Area Networks (WRAN)- Specific require.pdf
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1、 Part 22: Cognitive Wireless RANMedium Access Control (MAC) and Physical Layer (PHY) Specifications: Policies and Procedures for Operation in the TV Bands Amendment 2: Enhancement for Broadband Services and Monitoring Applications Sponsored by the LAN/MAN Standards Committee IEEE 3 Park Avenue New Y
2、ork, NY 10016-5997 USA IEEE Computer Society IEEE Std 802.22b-2015(Amendment toIEEE Std 802.22-2011as amended by IEEE Std 802.22a-2014) IEEE Standard for Information TechnologyTelecommunications and information exchange between systems Wireless Regional Area Networks (WRAN) Specific requirements ,(6
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4、%XWFK$QWRQ0DGKXVXGDQ%DQDYDUD7XQFHU%DNDV+DUU%LPV1DQF%UDYLQ:LOOLDP%UG(GJDUDQG*7(. whereas, the primary management flowis used by the BS/A-BS or the distributed scheduling A-CPE MAC and CPE MAC to exchange longer, moredelay-tolerant MAC management messages (Table 19 specifies which MAC management messa
5、ges aretransferred on which type of connections). Finally, the secondary management flow is used by the BS/A-BSor the distributed scheduling A-CPE and CPE to transfer more delay-tolerant, standards-based (e.g., DHCP,TFTP, and SNMP) messages that are carried in IP datagrams. The secondary management
6、flow may bepacked and/or fragmented, similarly to the primary management except that no ARQ should be used for thelatter since it is more time critical.Change the now seventh paragraph of 7.2 as follows:Many higher-layer sessions may operate over the same wireless connection. For example, many users
7、within a company may be communicating with Transmission Control Protocol (TCP)/IP to differentdestinations, but since they all operate within the same overall service parameters, all of their traffic ispooled for request/grant purposes. A service flow is a unidirectional flow of traffic (BS/A-BS to
8、CPE, orCPE to BS/A-BS, distributed scheduling A-CPE to CPE, or CPE to distributed scheduling A-CPE) thatdefines the mapping of higher-layer application service parameters (e.g., QoS) to a FID assigned to aparticular CPEs unicast SID or multicast group (multicast SID).7.3 General superframe structure
9、Insert the following paragraphs as the first three paragraphs of the preliminary text in 7.3:The A-WRAN supports two PHY operation modes: PHY Operation Mode 1 (PHY-OM1, Clause 9) andPHY Operation Mode 2 (PHY-OM2, Clause 9a).The WRAN system and the A-WRAN system on PHY-OM1 shall support the following
10、 superframestructure.The A-WRAN on PHY-OM2 does not support the following superframe structure.Change the now fourth paragraph of the preliminary text in 7.3 as follows:The IEEE 802.22 WRAN system and the A-WRAN system on PHY-OM1 includes two operational modes:a normal mode and a self-coexistence mo
11、de. In normal mode, one WRAN/A-WRAN cell occupies one ormore channels and operates on all the frames in a superframe. In self-coexistence mode, multiple WRANand/or A-WRAN cells share the same channel, and each coexisting WRAN and/or A-WRAN cell operateson one or several different frames exclusively.
12、Change the title of 7.4 as follows:7.4 General frame structure (on PHY-OM1)Insert the following paragraph as the first paragraph in 7.4:The WRAN system and the A-WRAN system on PHY-OM1 described in Clause 9 shall support thefollowing frame structure.IEEE Std 802.22b-2015IEEE Standard for Wireless Re
13、gional Area NetworksPart 22: Cognitive WRAN MAC and PHY Specifications: Policies and Procedures for Operation in the TV BandsAmendment 2: Enhancement for Broadband Services and Monitoring Applications8Copyright 2015 IEEE. All rights reserved.Insert the following subclauses (7.4a and 7.4b and their s
14、ubclauses, figures, and tables) after 7.4:7.4a General frame structure (on PHY-OM2)The A-WRAN on PHY-OM2 described in Clause 9a shall support the following frame structure.The A-WRAN on PHY-OM2 includes two operational modes: a normal mode and a self-coexistence mode.In normal mode, one A-WRAN cell
15、occupies one or more channels and operates on all the frames. In self-coexistence mode, multiple A-WRAN cells share the same channel, and each coexisting WRAN celloperates on one or several different frames exclusively.The A-WRAN on PHY-OM2 shall transmit the Frame Control Header (FCH) (7.5.2a, Tabl
16、e 2a) at thebeginning of every frame on the operating channel in both normal mode and self-coexistence mode. An A-WRAN runs in normal mode by default and transits to self-coexistence mode when the A-WRAN can detectand decode an FCH or a CBP from an adjacent A-WRAN cell on its operating channel.7.4a.
17、1 General frame structure for normal modeThe A-WRAN frame structure depicted in Figure 12 shall be used and the first frame shall be constituted ofthe following: A PHY frame preamble (Clause 9a) A Frame Control header (FCH) (7.5.2a) The rest of the first frame including its frame header and data pay
18、loadAt the beginning of every frame, the A-BS shall transmit the frame preamble and the FCH on the operatingchannel using the modulation/coding specified in 9a.2 and Table 231e, respectively. In order to associatewith an A-BS, a CPE must receive the FCH to establish communication with the A-BS. Duri
19、ng each MACframe, the A-BS shall manage the upstream and downstream operations, which may include ordinary datacommunication, measurement activities, coexistence procedures, and so on.7.4a.2 General frame structure for self-coexistence modeThe A-WRAN frame structure in self-coexistence mode is shown
20、 in Figure 13a. The self-coexistence modeis for the scenario when multiple A-BSs with overlapping coverage have to share the same channel. Thefrequency reuse factor cannot be maintained as one due to the mutual interference of these A-BSs. In thiscase, the A-BSs shall share the channel on a per-fram
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