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`FONG
`M0°HAN
`ZHU
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`PEIYING
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`JIANGLEI
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`TITLE OF THE INVENTION {280 characters ma)()
`METHOD ANP APPARATUS FOR FEEDBACK AND LOCATION UPDATE
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`11---=G~iv~en~N~a~m~e~<~lfir~sr~a~n~d~m~ld~d~le~r~ira~n~•~....._l___,1--~F=a~iworSumame
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`ZTE, Exhibit 1009-0003
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`ZTE, Exhibit 1009-0004
`
`
`
`l715lROUS01P
`
`Method and Apparatus for Feedback and Locc1.tion Update
`
`Various methods are provided fo:c providing feedback
`from mobile stations tc, a network. one o·c- more of these
`methods might for examJj11e be impl.emented in IEEEB02, 16e
`s Downlink and Uplink sys1tems.
`
`"•
`
`PART-ONE: MSS fast sig1~ing for feedback/intention indication
`
`10
`
`15
`
`20
`
`Background of the Invention
`
`In order to Eac.ilitate the DL data transmission, some
`information of feedback, such as C/I meai::urements and MSSs'
`indications, such as MIMO/perrnutation modes is needed to be
`sent from MSSs.
`
`In B02.l6e, fast-feedback channel is introduced to
`.
`.
`.
`.
`.
`enable such operation. In B02.16e/D3, two types of fast
`feedback operations axe defined:
`
`1) unicast Fast-P·eedbac::k allocation subheader can be used
`.
`.
`to let MSS to feedback one of 4 typ~s of information using
`the temporarily assigned fast-feedback channel
`
`2) 'broadcast CQ:CC!H_alloc_IE can be used to allocate
`dedicated feedbac~k chamie1 (CQICH) with periodical
`opportunity enabling MSS to provide MIMO related intention
`(indication) .
`
`The above two approacl1es pro:vide quasi-periodical opportunity
`to enable MSSs to provide their indicatlon and feedback.
`
`1
`
`Copy provided bv USPTO Jrnm th,,, 11:::w lm/'1""' .,.,,. • .,.""'"'~ --- /\~l~'l/'}nnc-
`
`ZTE, Exhibit 1009-0005
`
`
`
`1715lROUS01P
`
`Detailed Description of the Preferred Embr>diments
`
`5
`
`In some cases, if a MSS needs t,:, inform its intention
`based on some real-tim&. requirements and :needs the BS to have a
`quick reaction (e.g. , 1:ast anchor BS switching, MIMO mode
`switchi-ng, UL resource request and etc), the above summarized
`approaches may not be Etf ficient ways, especially if a MSS has
`had a dedicated feedba<,k (CQICH) assigned and such an
`indication from a MSS :Ls not expected to change very
`frequently,
`
`10
`
`In some eml:)odiments, it is ass\.Lmed that each MSS has
`had dedicated feedback cl'iannel (CQICH) wbich might for example
`be ass~gned by CQICH_alloc_IE.
`
`In a first embodiment illustrat:ed in Figure l, the
`MSS uses a pre-reserved feedback payload code (e.g., 1111) to
`indicate that the MSS wants to inform BS of its intention.
`
`15
`
`In response to this, the BS allocate resources for
`the MSS to send a newly de:fined MSS_repo·ct header (defined l::>y
`way of example in Figure 5). Preferably, the MSS_report header
`includes information, such as basic CID, reporting type and
`20 detailed reporting) 01: newly defined MSS_report_IE () (refer to
`Fig. G), which includE~s reportin~;( type arid detailed reporting
`
`In a anotheJ~ embodiment iliustrated by way of example
`in Figure 2, the BS u11es an unsolicited polling method by using
`newly defined Feedback_channel_reporting_IE {number of
`feedback/reporting tY)?es is.increased) which includes the
`required type for a MSS to report. BS sends
`Feedbaek_channel_repo:C'ting_IE which indicates the reporting
`
`25
`
`2
`
`Copy provided by USPTO from the IFW lmi,m'I i, ..... .._ .... ,,, "" ,iq1-t?l?Mc;
`
`ZTE, Exhibit 1009-0006
`
`
`
`, ___ _
`
`17151ROUS0lP
`
`type expected by BS. 1~e MSS will use the dedicated feedback
`channel to report the J"ec;[Uired information in the next frame.
`
`In some embodiments, the MSS does not have a
`dedicated feedl:>ack (CQICB) assigned.
`
`s
`
`In a first such embodiment, (refer to Fig.3) the BS
`uses unsolicited polling method by using newly defined
`-
`-
`-
`Feedback channel reporting IE (number of feedback/reporting
`types is increased) which includes the rE:quired type for a MSS
`to report and the temporary assigned feedback channel (CQICH).
`10 The BS sends Feedback_channel_reporting_IE which indicates the
`:reporting type expected by BS and the asuigned temporary
`feedback channel {CQICH). The MSS will use the temporary
`feedback channel to report the required :Lnformation in the next
`frame.
`
`l.S
`
`20
`
`25
`
`In·another such.embodiment," (refer to Fig.4), the BS
`uses unsolicited pollj,ng method (use nor1.11al _UL MAP IE) to
`-
`enable the MSS to use MSS Intention header. The MSS uses the
`. .
`.
`header to indicate rei>orting . type and reporting. The BS sends
`UL MAP IE.to poll the report from a MSS C the resource assigned
`fit to MAC· MSS_:report header (6 bytes)." The MSS used the UL
`resource to·eend the MSS_report MAC header.
`
`One advanta!;e of the abQve enhancement is to enable a
`guick reaction on som,a real-time requirement (fast anchor BS
`switching, fast MIMO mode s:witching, timely UL resource
`allocation for UL traffic and so on).
`
`Note if the MSS_:report_IE is used for a MSS to send
`its intention, this IE might for examplu be :repeated twice or
`
`3
`
`Copy provided by USPTO from the IFW flnp,.,. r, .. 1.,.1-, .. .,.,. "'"' ,.111,◄ "'""n"
`
`ZTE, Exhibit 1009-0007
`
`
`
`~ .. 7l51ROUS01P
`
`four times depending on the instruction in UL MAP IE (). In the
`following figures, MSS __ report header represent either
`MSS_report MAC header (48 bits) or the MSS_report_IE (16 bits).
`
`HS
`
`UL MAP Mlh UI. resource
`llllocaicd 1bt the MSS to scud
`B\11 or M!iS_rcpan MAC hcudot
`...
`·1n1·
`S,sn1011 ossil!Wl clcdlc;IC4 CQICH
`(MSS wam 10 :illlld i1.1 ln\Cnlion rqx,11 )
`
`B\11 bender or
`MSS_c,:pon boadcr
`
`MSS(bilsdcdi~·-I -1--I
`
`fm1blck cmnncl Ol r,,pat11
`DAigucd)
`Scni on :wii.,icd
`dGdic;\C4 CQICH
`
`C/111:pon,
`Seal OD a.mened
`d"lica'ICd C(llCH
`
`5
`
`10
`
`Fig. 1. Scenario 1-option l..
`
`Fig. 2 Scenario 1 opt;Lon 2.
`
`Pctiodic poll:
`MSS_tccdbac i:_oh..,,,clJq>onins..lS
`sem iii ULM \P ltlCAllll"
`(illdlcucs 111,: sypo ot
`
`Rcpo11 infb <- lalllt: 2961 of' .16c/D3)
`(4b!l.o.-cr1b;
`fccdbaok CH)
`
`4
`
`Copy orovided bv USPTO from thP, 11:::w lm"'"P. r, .. tph.,.~o ,...,~ l'IDl~?/')nn,:
`
`ZTE, Exhibit 1009-0008
`
`
`
`l7l51ROUSOlP
`
`Periodic 1)011:
`MSS_f=llllacl<_roponills..~
`1,e,11u1 UL MAP~ wilh
`
`Fig. 3. Scenario 2 - option l
`
`Pcr,odic poll:
`
`BWbcadcror
`MSS_n:port hcndor
`
`BWhcadcror
`MSS_report header
`
`s Fig. 4. scenario 2 - c1ption 2.
`
`- -- ....
`- -~
`
`II
`
`.... Type "'011 (3)
`::c M
`
`Report Type
`(4)
`(See table XX)
`
`Report details
`(4 bits)
`{See Table 296a)
`
`Resurved
`(3)
`
`Reserved
`(8)
`
`Basic CID
`(8 bits)
`
`Basic CID (8 bits)
`
`HCS (8 bits)
`
`Fig. s. MSS_report MAC header.
`
`5
`
`Copy provided by USPTO from the IFW lmaoe Database on 09/1?/?n,,i:;
`
`ZTE, Exhibit 1009-0009
`
`
`
`1715l.R.OUS01P
`
`Report Type
`(4)
`(see table XX)
`
`Report details
`(4 bits)
`(See Table 296a)
`
`Fig. 6. MSS_report_IE format
`
`HCS (8 bits) J - -
`
`s Table l. report type
`
`Re120rt t:lD2e
`
`Descri12tion
`
`ObOOOO
`
`ObOOOl.
`
`Ob0O1O
`
`MIMO mode and Eerinutation (see table 296a
`ObOOOO-ObOOll)
`
`'
`
`£lose-looE SM and Eermutation mode (see table
`~9Ga Ob001l•Ob0ll!Ll,_
`
`Anchor BS switching (see table 296a ObOlli)
`
`Ob00l.l-Ob111l
`
`Reserved
`
`Table 2: Encoding of Jlayload bits for fast feedback slot
`
`Value
`
`ObOOOO
`
`-
`
`De script ion
`
`STTO and PUSC/FUSC
`permutation
`
`ObOOOl
`
`ST'l'D and adjacent-
`
`6
`
`Copy provided by USPTO from the IFW lmaoe Database on 0~/12/200/'i
`
`ZTE, Exhibit 1009-0010
`
`
`
`l715lROUS01l?
`
`-
`
`ObOOlO
`
`Ob0011
`
`Ob0100
`
`Ob0101
`
`-
`
`ObOllO
`
`ObOlll
`
`subcarriei·
`permutatic1n
`
`SM and l?U~;c/FUSC
`pe_rmutat i<>n
`
`SM and adjacent-
`subcarrie:,
`permutation
`
`CJ.ose-loo[>. SM and
`PUSC/FUSC
`permutation
`
`Close-loop SM and
`adjacent sUbearrier
`tpermutatjon
`
`Close-loc,p SM +
`beamform:i.ng and
`adjacent subcarrier
`[permutation
`
`. TEMP BS :cD of
`eXt>ected anchor BS
`
`(TEMP BS ID-was
`. la.ssiqned in
`MOB BSHO REQ/RSP
`iWhen·the BS was
`added to the active
`set of a MSS)
`
`7
`
`---------cc:ooiiiovrio;i;romvricidfeedd i;;bviriuffisiiiPiiiroi:5fi:tr;;;om;;»th;;elFIF:UWiii1~m;;.ao;;;;e:-rn:;:,,.:..::,1:1:'i:1:i1:1:::, i'\::-A::nn:-ninr:iii.:11;;;?;::;-l?nnrn;:i;°r; _____________ _
`
`ZTE, Exhibit 1009-0011
`
`
`
`l71SlROUS0lP
`
`:
`
`I
`
`Table 3. Feedback_channel_reporting-IE format.
`
`Syntax
`
`)
`
`-
`Feedback_channel_reporting_IE{
`{
`
`-
`
`Extended DIUC
`
`Length
`
`Num_polls
`
`Sizo IN'otes
`
`FCR = OX06
`
`4
`bits
`
`Length of the
`i4
`lbits message in
`bytes
`
`Number of
`4
`bits IPolling in
`this IE
`
`0: BS is
`l?Olling a MSS
`who has no a
`dedicated
`feedback
`
`-
`for (i ;; O; i< Num_poll;
`i++) {
`
`-
`l
`feedback_channel_assigned_i~di bit
`oatior
`
`-
`
`a
`
`__ t;_opy provided by USPTO from the IFW !maoe Oatal:l1::1!'IP. nn nq11 ?/?Mc
`
`ZTE, Exhibit 1009-0012
`
`
`
`1715lROUS0l.l?
`
`channel
`rassigned
`
`1: BS is
`polling a MSS
`iwho has a
`dedicated
`feedback
`channel
`rassigned
`
`~asic ID of
`16
`~its ~he polled MSS
`
`Index to the
`6
`~its fast feedback
`channel region
`~arked by tJ'IUC
`
`~al~i !Assigned by
`ab:Le rusing
`CQICH_alloc_IE
`
`if
`(feedbaek_channel assigned_ind
`icator == o) {
`
`CID
`
`Feedback channel
`
`offset
`
`}
`
`else {
`
`CQIC:El_ID
`
`}
`
`Coov orovided bv USPTO from thfl 11::w 1 .... ,,.,..,, r,.,.,.,.._.,.,.., "'" ,iq11?/?1'111'-
`
`ZTE, Exhibit 1009-0013
`
`
`
`...
`
`17151ROUS01P
`
`-
`Reporting_ t}'l>e
`
`~
`!bits
`
`}
`
`}
`
`Table 4 - UCD PHY-specific channel encoding - WirelessMAN-OFDMA
`
`e (1
`
`alue
`
`l.73
`
`for
`
`tirnal AMC
`errnutation
`
`Allow AAS Beam
`Select messa es
`
`Intention fla code
`transmitted over CQIC~
`
`6
`
`1
`
`1
`
`Code reserved
`used as MSS
`intention fla
`transmitted over
`CQICH
`
`10
`
`Copy provided by USPTO from the 11::w , .... .,.,.,,. .,.,. • .,.""'"'" ,__ n,01◄ ?1?nnc:
`
`ZTE, Exhibit 1009-0014
`
`
`
`1715l.ROUS011?
`
`PART-TWO: MSS initiated_!,ocation update
`
`Background of the Invention
`
`In B02.1Ge/D:~, the idle mode is described in Section
`6,3.21 as an optiona1 rnode. The paging groups are defined to
`· enable reasonable pagin.g overhead and reasonable accuracy of
`MSS location. A MSS in idle mode shall u1;,date its location to
`network either when the MSS has entered a new paging-group or
`the MSS is requested to \lpdate its looatj,on by BS. In the
`current standard, the l.ocation update pre>cedure is similar to
`that of an initial rangin.g.
`
`Detailed Description of the Preferred Embodiments
`
`The purpose of location update is to inform network
`of a-MSS' location,. instead of a network entry. Therefore the
`current location updat.e procedure can be simplified to
`eliminate unnecessary overhead and delay. New location update
`methods are provided.
`
`s
`
`10
`
`15
`
`In one met:he>d, location update codes are introduced
`used for MSS initiated location update (LU).
`In another
`method, for BS initiat:.ed LU, a code is assigned to a MSS when
`20 BS pages a idle MSS. An authentication key renewal option is
`also introduced.
`
`A fi:rst approach is illustrate~d bel.ow in which
`RNG_REQ/RSP is used for LU purpose.
`
`Figure 7 MSS initiated lJU
`
`l l
`
`Coov provided bv USPTO from fhp, 11:w Im.,,.,,. i:,., • .,...,.,.,."' " " "q/~?I?"""'
`
`ZTE, Exhibit 1009-0015
`
`
`
`•
`
`'.!.?151.R.OUS0lP
`
`es
`
`CDMA alloc IE
`·-·
`hPlE
`orlJl- r
`
`REN RSP
`Ctuple end
`{wilhHMJ
`~th o renewed
`opllonnll)''
`onkey(AK.))
`11n1hcntica1
`
`'
`
`MSS
`Location update code
`Or IUIIG)REQ wilb LU
`indic:111or
`
`'
`
`R.EN_RE<l
`(wit!, HMAC ruple)
`
`Figure 8 BS initiated uU
`
`BS - - - . . . - - - - - - - - CDMA alloc IE
`oi1 J MAPIE
`MOB_Pj>.G_APV
`messas, wilb or witho111
`the assii ncd code
`
`MSS-------------
`
`_Codc rransmission
`(Uscllli$igned
`codc)or
`RNG_RBQ witl1 LU
`Indicator
`
`'.
`
`.
`
`REN_R£Q
`(with HMAC Uiple)
`
`Pl<.M-REQ
`(needed only when ihe AK is renewed}
`
`-
`
`PKM•REQ
`(needed only
`when the
`AK l:1 rcuewed)
`
`s
`
`update.
`
`In a second approach LU_REQ/RSP is used for location
`
`Figure 9 Mss initiate,i LU
`
`12
`
`Copy provided bv USPTO from the IFW Ip,,,.,.., .,,.,,.i-..,.,.,,. "~ n0Mn1nnni:
`
`ZTE, Exhibit 1009-0016
`
`
`
`17151ROUS01P
`
`BS
`
`LU RSP
`C Wplc mid
`(with H
`'lh ZI renewed
`opdanally
`anihcntica n key (AK.) )
`
`MSS-___Ji_ _ _ _ ;z... ____ .. .__, ___ ......,.:;,.._ _____ P_K,.1,M ___ RE_Q _ _ _ _ _ _ _ _
`LU_REQ
`(wid, HMAC wple)
`
`od
`Locaeion updaic c: o
`Or RNG RBQ wiib Ll/
`lnclicawr
`
`(needed only
`when lhe
`AK is renewed)
`
`Figure 10 BS initiated LU
`
`BS
`
`REN_nsr
`(with l lMAC tuple and
`---.-------:r----::~-r-:~-----ir---;;on1p~.
`newc:
`MOB_P G_ADV
`anthenriczi on key (AK))
`1'111:~iag with or without
`tha assi
`c:d code
`
`MSS---------~-
`
`Code tl':lnsmiss,on
`(Use nssigncd
`code) or RNG __ RSQ
`with an LU indica1cn
`
`REN_iu;:Q
`(with HMAC tuple)
`
`PKM~REQ
`(needed only
`when the
`AK is renewed)
`
`5
`
`PART-THREE: MSS Fast <~l Search
`
`Background of the Immnt ion
`
`10
`
`The current p:c·eamb1e per IEEB802 .16-2004 is designed
`primarily for fixed deployment. 'I'he preamble search requires a
`large amount of compu~ation power at the, MSS for fast system
`access and for cell selection and reseleiction to support the
`device mobility in a multi-cell deploynmnt scenarios and to
`perform frequency domain fine synchroni~~ation. For the initial
`cell search, there is no prior knowledg•, about the
`
`13
`
`Copy provided by USPTO from the IFW lma~e Database on 09/12/200/i
`
`ZTE, Exhibit 1009-0017
`
`
`
`l.715lR.OUS0l.P
`
`synchronization positions for potential b.ise station
`candidates; hence the MSS needs to perfopn the correlations
`with all possible PN sE1quences foJ:" each P'FT window position
`within the entire searc:hing window. Such a window could .be
`large even for the sync:hronous BS network. For hand-off, even
`with the presence of the adjacent BS list information broadcast
`from the anchoring BS, the preamble search is of excessively
`high computational complexity.
`
`s
`
`Detailed Description of the Preferred Eml:1odiments
`
`10
`
`15
`
`A fast cell search procedure iu provided to reduce
`the cell search complexity by almost 60 1:imes.
`'l'he cell search
`is typically performed for MSS in the ac1:.ive state, cell
`scanning and even idle mode.
`Advantage,:>usly, the fast cell
`search may be very .beneficial in terms d~astically reduce the
`power consumption.and battery life of poctable device.
`
`A common pre:amble is introduced. in addition to the
`'l'he common preamble uses a
`existing cell specifiu preamble.
`common PN sequence £01~ all BSs. The MSS performs fine
`synchronization using the common PN sequence on the common
`preamble, and the. result will provide the locations of
`candidate BSs. The BS specific search is then performed in the
`vicinities of those p,~aks by using BS s:pecific PN sequences.
`With this two stage cell search, the searching window is
`drastically reduced.
`
`20
`
`25
`
`14
`
`Copy provided bv USPTO fro111 thA 11:::w ,,..,,.,.,,, r:,,,.1"'""'~"' ,.., .. 1"1<11~?1?11/\i:
`
`ZTE, Exhibit 1009-0018
`
`
`
`17l51ROUS01P
`
`Geon1et1y vs. Distance
`
`30
`
`20
`
`iii ,, - 10
`~ -a,
`
`~ 0
`c!
`
`•10
`
`-20
`
`0
`
`. . ·.
`
`1000
`
`7 - - -
`
`•• • • ,.
`..
`
`.. :
`
`• .. • ••1 •
`
`•
`
`•
`
`•
`
`2000
`
`3000
`Distance (m)
`
`4000
`
`5000
`
`6000
`
`FigUre 11 The best BS l.ooation ma.y not bt!il in the adjacent cell
`
`For the synchronized BS deployment, let's assume that
`the anchor BS will brc,adoast the neighbo·c BS list for M
`sectors, and the searc:hing window is 300 samples long (as we
`have 256 samples preflx), however the real·world the searching
`window can be differex1t, and maybe larger or smaller. The
`c~rrelation o~ ~he conunon preamble allows the BS specific
`preamble search window to reduce, for example to about 5
`samples or less, then cell specific preamble searching can be
`performed.
`
`5
`
`10
`
`'l'able 5 Cell search f•:>r hand-off case
`
`Number of
`preamble
`correlation
`
`One tier c:ell
`
`Two tier cell
`
`3-aectoru 9-beams
`cell
`cell (AAS)
`
`3-sectors
`cell
`
`9-beams cell
`(AAS)
`
`Baseline
`
`300x20-60 3OOx63.:1890. 300Xl9X3=17O
`
`3OOX19X9
`
`15
`
`Copy Drovided by USPTO froin fhP. 11::w ,_.,.,."" ""''"'"'"'"'"" ,., .. nC11-<?l?'I'"'
`
`ZTE, Exhibit 1009-0019
`
`
`
`l7151ROUS01P
`
`Cell Search 00
`
`0
`
`99
`
`=51299
`
`Fast Cell
`Search
`
`5x20=100
`
`5x63=31S
`
`Sxl9X3=-285
`
`sx19x9~ass
`
`-
`
`It can be seen that the common preamble ansisted cell search
`can speed up the preamble search time by ,;o times, or to reduce
`the search computational complexity by 60 times.
`
`Solution l
`
`5
`
`10
`
`15
`
`The current IEEEB02.16d/DS spec.Lfication defines 3
`carrier sets, each of which is used by a :segment .
`In the early
`version (IEEE802.16d/D4), the 6 carrier s,:1ts are used; each
`segment uses two carrier sets. We can use the same 6 carrier
`sets. one carrier set i.n each segment is used for the common
`preamble. For 2 transm.i.t antennas, antenn.a. o uses odd carrier
`set, antenna l uses even carrier set. The common preamble is
`mapped to carriers set1:.1 used by antenna o •
`
`In one example implementation, for each segment as
`defined in previous sec:tions, two or four antennas are used to
`transmit the MI.MO signcLls. Each segment uses 2 types of
`prearnb1e carrier-sets (one for each antenna or pair of
`an_~ennas) out of the 6 sets in the following manner:
`
`For two tran11mit MIMO or four transmit_ MIMO:
`
`Segment o - carrier set: o used by antenna o, carrier set 3 used
`by antenna 1
`
`20
`
`Segment 1 - carrier sec 1 used by antenna o, carrier set 4 used
`by antenna l
`
`16
`
`Copy provided bv USPTO from thfl 11:w •-"'""" "'"'."'""'c-"" '"'"' ,io,1~?/?flflc
`
`ZTE, Exhibit 1009-0020
`
`
`
`,.
`
`•
`
`1715l.R.OUS01P
`
`Segment 2 - carrier set 2 used by antenna o, carrier set 5 used
`by antenna l
`
`For four transmit MIMO:
`
`Segment o - carrier set 0 used by antenna o and 2, carrier set
`3 used ~y antenna 1 and. l
`
`5
`
`segment l - carrier set. l. used by antenna o and 2, carrier set
`4 used by antenna l ancl 3
`
`Segment 2 - carrier set: 2 used by antenna O and 2, carrier set
`s used by antenna land 3
`
`10 Solution 2
`
`TO keep the backward compatibility with IEEE802.16-
`2004, a new designed c,::,mmon preamble is inserted into th.e frame
`structure alternatively with to existing preamble as shown in
`Figure 1..
`
`~ ..
`~: . ~
`
`Frame
`
`,,,
`·:::
`.:~
`
`New
`Prenml:lle
`
`Exie.ling
`Proamble
`
`15
`
`Figure 12 Solution-2
`
`The new common preamble has the different structure
`shown _below. Frame (cc,urse timing) synchronization can be
`performed based on _thu repetition structure of the new
`preamble. Fine timing synchronization is bas_ed. on the common
`preamble and provides the candidate timing synchronization
`17
`
`20
`
`Copy provided by USPTO from the IFW lmaae Database on 09/1?/?005
`
`ZTE, Exhibit 1009-0021
`
`
`
`,.
`
`17151.ROUS0l.P
`
`positions. BS specific preamble search can be done based on the
`existing preamble in the next frame at th,! candidate timing
`synchronization positions.
`
`• Prefix
`
`Prefix
`
`New Preamble Symbol
`
`Existing Preamble Symbol
`
`5 Figure. 13 Time domain sti·ucture of common preamble
`
`the common preamble
`'In an example j,mplementation,
`sequence is defined as a power boosted Bl1SK modulated sequence
`"2C46FBD3G3 ... 465AGB" and it modulates eve:i:y 2nd sub-carrier. 'l'he
`universal preamble is used as preamble fe>r every odd frame.
`
`lO Solution 3
`
`This solution is similar to so:Lution 2, except it
`inserts the new preamhle into the frame dtructure between two
`current preambles. It requires more over'nead, but provides
`faster system access.
`
`15
`
`18
`
`Copy orovided bv USPTO from the JFW !-n1:1oe D;,tp"p~p nn ,iq11?1?rw::
`
`ZTE, Exhibit 1009-0022
`
`
`
`r•
`
`.•
`
`17l5lROUS0lP
`
`h'
`"t:U
`ft,:
`
`•11 .. ••
`'! .. . ...
`o'l' ~-. .
`!
`
`·=·
`
`..,..
`,;,~
`i; ...
`:-i ..
`·-r·: .. .. ~.
`
`l
`
`s . ..
`.
`
`,.
`
`EJtlstlng
`Preamblo
`
`New
`Preamble
`
`Figure 14
`
`S
`
`In an examplE~ implementation, the universal preamble
`sequence is defined as a power boosted BPSK modulated sequence
`"2C46FBD3G3 ... 46SA6B" anci it modulates eve:t:y 2»-cl sub-carrier. The
`universal preamble is :Lnserted immediately after default
`preamble.
`
`19
`
`Co1>v 1>rovided bv USPTO from fhP, 11::w Im"'""" "'"''"'"PC:SP. nn nq1~?/?/'1/'1C
`
`ZTE, Exhibit 1009-0023
`
`
`
`This Page Is Inserted by IFW Operations
`and is not a part of the Official Record
`
`BEST AVAILABLE IMAGES
`
`Defective images within this document are accurate representations of
`the original documents submitted by the applicant.
`
`Defects in the images may include (but are not limited to):
`
`• BLACK BORDERS
`
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`
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`
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`
`ILLEGIBLE TEXT
`
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`
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`
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`
`As rescanning documents will not correct images,
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`
`-------'="'"'--~
`
`Copy provided by USPTO from the IFW lmami natal:l;:1~fl o"' 0~/1 ?/?M"
`
`ZTE, Exhibit 1009-0024
`
`
`
`...
`
`l7151ROUS01P
`
`Claims:
`
`The following claims ref el= to a method, rvms, BS and system.
`Each such cl.aim shall be c:onsidered to be four different claims
`having each of these four claim types.
`
`5
`
`l.
`
`A method/MSS/BS/system comprising/adapted to:
`
`provide each MSS with a dedicatad feedback channel;
`
`each MSS use a pre-reserved feedback payload code to
`indicate that the MSS wants to inform BS of its intention;
`
`the BS allocating resources for the MSS to send
`feedl:>ack information.
`
`10
`
`2.
`
`A method/MSS/BS/system accordir.~g to claim l. wherein:
`
`wherein the feedback informatic,n comprises the
`MSS_report header defined herein.
`
`3.
`
`A method/MSS/BS/system according to claim l wherein:
`
`l.5
`
`wherein the feedback informat it:>n comprises a
`MSS_report_IE as defined herein,
`
`4.
`
`A method/MSS/BS/syatem comprising/adapted to:
`
`providing each ~ss with a dedicated feedback channel;
`
`.,
`
`20
`
`a BS employing an unsolicited pol~ing method by using
`a Feedback_channel_reporting_IE defined herein which includes
`the required type for a MSS to report;
`
`20
`
`Copy provided bv USPTO from fhA 11:::w 1,...,.,..,,. i:,.,.,.,.~.,."'"' "" 1'1<11~?1?'11'"'
`
`ZTE, Exhibit 1009-0025
`
`
`
`('
`
`,l
`
`.~
`
`l71SlROUS01P
`
`BS sends Feedhack_channel_reporting_IE which
`indicates the reporting type expected by BS in response to
`which the MSS will use t;he dedicated feedback channel to report
`the required information in the next frame.
`
`5
`
`5.
`
`A method/MSS/l:3S/system comp:risiI>g/adapted to:
`
`a BS uses unsc::,licited polling method by using a newly
`defined Feedback_channel_:t·eporting_IE (nuniber of
`feedback/reporting type~ is increased) whjch includes the
`required-type for a MSS to report and the temporary assigned
`feedback channel (CQICHI;
`
`10
`
`the MSS using the temporary feedback channel to
`report the required infi::>rmation in the neJ1:t frame.
`
`6.
`
`A method/MSS/BS/system comprisirLg/adapted to:
`
`15
`
`the BS using an unsolicited polling method {use
`normal UL MAP IE) to enable the MSS to use, MSS_Intention
`header;
`
`the MSS uses the header to indiciate reporting type
`and reporting·;
`
`20
`
`the BS sends UL MAP IE to poll t.he report f ram a MSS
`( the resource assigned fit to MAC MSS_re1,ort header (6 bytes) .
`The MSS used the UL r.esource to send the MSS_report MAC header.
`
`7.
`
`A method/MSS/BS/system comprising/adapted to:
`
`provide location update codes fc,r MSS initiated
`location update (LU).
`
`21
`
`Copy provided bv USPTO from the 11::w , ..... ,.,.. ""'~"'""'°'o ""' fl<ll~?l?r>nr:
`
`ZTE, Exhibit 1009-0026
`
`
`
`l7151ROUS0l.P
`
`a.
`
`A method/MSS/l3S/system comprising/adapted to:
`
`provide location update codes for MSS initiated
`location update (LU), substantially as illustrated in Figure 7.
`
`9.
`
`A method/MSS/ES/aystem comprising/adapted to:
`
`n 5
`
`for BS initiated LU, a code is assigned to a MSS when
`BS pages a idle MSS.
`
`10.
`
`A method/MSS/BS/system comprisin~J/adapted to:
`
`for BS initiated LU, a code is ausigned to a MSS when
`BS pages a idle MSS, substantially as illuBtrated in Figure a.
`
`lO
`
`A method/MSS/BS/system comprisin£;f/adapted to use a
`11.
`LU_REO/RSP for location update substantially as illustrated in
`Figure 9 or 10.
`
`12.
`
`A method/MSS/B:~/system comprising/adapted· to:
`
`for multiple B~3 transmit a common preamble and a BS
`specific preamble;
`
`1S
`
`wherein the Ms~; performs initial searching based on
`the common preamble to identify rough search locations and then
`performs BS specific sea:t·ching based on the BS specific
`preambles.
`
`20
`
`13.
`
`A method/MSS/BS/system according co c"laim 12 whe_rein
`
`there are N ca%rier sets, each of which is used by a
`segment, and in which one carrier set in ea,~h segment is used
`for the common preamble.
`
`22
`
`Co1>v orovided bv USPTO from th,=,, 1cm ,_..,,..,. "'"'"""'"'"''" ,..~ " 111~?,.,n,,.,
`
`ZTE, Exhibit 1009-0027
`
`
`
`.,
`
`r
`
`l71SlR.OUS0lP
`
`A method/MSS/llS/system according to claim 13 wherein
`14.
`for 2 transmit.antennas, antenna o uses odd carrier set,
`antenna l uses even car2·ie:r set, and the C•~mmon preamble is
`mapped to carriers sets used by antenna o.
`
`5
`
`A method/MSS/BS/system wherein f1>r each segment as
`15.
`defined in previous sections, two or four antennas are used to
`transmit the MIMO signals, each segment ust~s 2 types of
`preamble carrier-sets (one fer each· antenncl or pair of
`antennas) out of the 6 sets in the· f ollowi:rig manner:
`
`10
`
`For two transmit MIMO or four transmit MIMO;
`
`Segment o - carrier set 1) used by antenna o , carrier set 3 used
`by antenna l
`
`Segment 1 - carrier set i used by antenna o, carrier set 4 used
`by antenna l
`
`15 Segment 2 - carrier set~ used by antenna o, carrier sets used
`by antenna J.
`
`For four transmit MIMO:
`
`Segment o - carrier set o used by antenna o and 2, carrier set
`3 used by antenna 1 and 3
`
`20
`
`Segment 1 - carrie:r set l used by antenna o and 2, carrier set
`4 used by antenna 1 and 3
`Segment 2 - carrier set 2 used by antenna 0 and 2, carrier set
`5 used by antenna 1 and 3
`
`23
`
`----------=
`
`CoDY provided by USPTO from the JFW Imi:me Database on 09/12/:>00!i
`
`ZTE, Exhibit 1009-0028
`
`
`
`~
`
`17151ROUS0lP
`
`A method/MSS/EIS/system according to claim 12, wherein
`16.
`to keep the backward con~acibility with IEEEB02.16-2004, the
`new designed common preamb:Le is inserted into the frame
`structure alternatively with to the existing preamble.
`
`5
`,.,
`
`A method/MSS/BS/system according to claim 12 wherein
`17.
`the new common preamble has the different s:tructure shown in
`~igure 13.
`
`A method/MSS/:BH/system according to claim 12, wherein
`18.
`the common preamble seqimnce is defined as a power boosted BPSK
`10 modulated sequence "2C46l-'BD3G3 ... 46SA68" and it modulates every
`2nd. sub-carrier. The univ,~rsal preamble is used ·as preamble for
`every odd frame.
`
`A method/MSS/BS/system according t;o claim 12, wherein
`19.
`the new common preamble is inserted the new preamble into the
`frame st:ructu:re between t·wo current p:reamblEIS.
`
`15
`
`A method/MSS/BS/system according to claim 12, wherein
`20.
`the common preamble sequel1ce is defined as a power boosted BPSK
`modulated sequence "2C46Fl3D3G3 ••• 465A6'8" and it modulates every
`.
`.
`2nci sub- carrier, and the common preamble is j,:nserted
`immediately after default preamble.
`
`A method/MSS/BS/system according t~ any one of claims
`21.
`l to 20 adapted for use with IEEE802.l6e compliant methods,
`MSS, BS and systems .
`
`20
`
`•
`
`24
`
`Coov provided b" USPTO from the IFW l1T111riP- n;::,t11ti11se on 09/1"'"