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`DESIGNATED/ELECTED OFFICE {DO/EO/US}
`CONCERNING A SUBMISSION UNDER 35 U.S.C. 371
`INTERNA I IONAL APPLICATION NO.
`PCT/KR2007/002784
`TITLE 0~· iNVENTION
`METHOD OF TRANSMITTING DATA IN A MOBILE COMMUNiCATION SYSTEM
`
`I INTERNi\liONi\L FlUNG DATE
`
`8 June 200r
`
`PRIORITY DA IE CU\IfvlED
`9 June 2006
`
`ATTORNEY'S DOCKET NUMBER
`2101-3596
`U.S. APPLiCATiON ~KJ. (If known, see 37 CFR 1.5)
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`·L
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`This is a FIRST submission of items concerning a submission under 35 U.S C. 371.
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`APPLICANT(S) FOR DO/EO/US
`Yeong Hyeon KWON, Seung Hee HAN, Hyun Hwa PARK, Dong Cheo! KIM, Hyun Woo LEE and Min Seok NOH
`App!it_;ant herewitll ~ubrYdt~ tu u-,e United State::; De~ignated/E!ected Off:c:e (DO/EO/US) u-,e fuiiuvving itern~ and uthe( :nfurfnatiun.
`[Z]
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`3. D
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`[L]
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`A copy of the International Application as Filed (35 U.S.C. 371 (c)(2))
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`Amendments to the claims of the International Application under PCT Article 19 (35 U.S.C. 3'71 (c)(3))
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`An English language translation of the annexes of the International Preliminary Examination Report under PCT
`Article 36 (35U.S.C. 371(c)(5)).
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`D
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`6.
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`D
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`U.S. Patent and Trademark Off;ce: U.S DEPARTMENT OF COMMEHCE
`Under the Paperwork Reduction Act of 1995. no persons are required to respond to a coilection of inforn1ation uniess it dispiays a va!id OMB control nurnber.
`I
`I
`I PCTiKR2007i002784
`ATTORNEY'S DOCKET NUMBER
`12101-3596
`
`INTERNATIONAL APPLIC.L\TION NO.
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`U.S. APPLICA: ION NO. (if known. see 37 CFR 1.5)
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`EVOLVED-0001647
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`ZTE/SAMSUNG 1005-0002
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`
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`PT0-1390 (Rev. 09-08)
`Approved for use through 2128/20'10 OMB 0651--002'1
`U.S Patent and Trademark Ottice; U.S. DEPARTMENT OF COMMERCE
`Under the Paperwork Reduction Act of 1995, no persons are required to respond to a collection of information un!ess it disp!ays a vaiid OMS control number
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`a. 0
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`A check ~n the arnount of$------------------------------------------------ to cover the above fees is en dosed
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`SIGNATURE
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`Page 3 of 3
`
`EVOLVED-0001648
`
`ZTE/SAMSUNG 1005-0003
`
`
`
`wo 2007/142492
`
`PCT /KR2007/002784
`
`1/22
`
`FIG. 1
`
`Walsh generator
`(Wm)
`
`Message
`
`Gain
`(Gm)
`
`'1 I
`
`Gain
`(Gs)
`
`Signature
`generator
`
`EVOLVED-0001649
`
`ZTE/SAMSUNG 1005-0004
`
`
`
`~
`
`~ e e
`
`~ e
`
`ol'-
`Ql!:
`-..J
`N
`
`N subframe
`
`Walsh code
`M-ary
`
`Repetition
`
`ro
`""-.. ro
`ro
`
`(single subframe)
`time domain ·
`Preamble burst signal of
`
`Burst repetition
`
`.. 1 IDFT
`
`of limited area
`Subcarrier mapping 1
`
`(L..K)
`CAZAC signature
`Zadoff-Chu
`
`ol'-"" N
`""' oi'-
`~
`e
`N e
`0
`~
`
`N
`
`FIG. 2
`
`~ 0
`tzJ a
`
`0
`01
`m
`......
`0
`0
`0
`I
`
`ZTE/SAMSUNG 1005-0005
`
`
`
`wo 2007/142492
`
`PCT /KR2007/002784
`
`3/22
`
`FIG~ 3A
`
`LRAcH
`
`1
`
`e -jn11/2
`
`e -jn11
`
`e -j3n 11/2 ·I
`
`n=O,l,2,3
`
`FIG. 3B
`
`LRAcH
`
`"---' "---' . ~
`DPSK modulation(DBPSK,DQPSK,D8PSK)
`
`FIG. 4A
`
`Preamble
`
`Coded bit
`
`T.1Trt An
`.r .l\.1' • 't D
`
`LRAcH
`
`1
`
`Coded bit
`
`EVOLVED-0001651
`
`ZTE/SAMSUNG 1005-0006
`
`
`
`wo 2007/142492
`
`PCT /KR2007/002784
`
`4/22
`
`EVOLVED-0001652
`
`ZTE/SAMSUNG 1005-0007
`
`
`
`wo 2007/142492
`
`PCT /KR2007/002784
`
`5/22
`
`<
`co
`sa
`r::..
`
`j
`
`,.Q.
`;:s
`UJ
`
`-~
`..g
`-~
`
`<1)
`
`<+-< 0 1 "'-'
`~
`
`~
`
`EVOLVED-0001653
`
`ZTE/SAMSUNG 1005-0008
`
`
`
`~
`
`~ e e
`
`~ e
`
`ol'-
`Ql!:
`-._J
`N
`
`ol'-"" N
`""' oi'-
`~
`e
`N e
`0
`~
`
`N
`
`Long block OFDM symbol
`
`Short block OFDM symbol
`
`RACH signal of frequency domain
`
`I
`
`'ri
`m
`
`l\:l
`
`I I
`
`I B I
`
`Sub frame
`
`FIG. 6B
`
`~ 0
`tzJ a
`
`ll:io
`01
`m
`......
`0
`0
`0
`I
`
`ZTE/SAMSUNG 1005-0009
`
`
`
`~
`
`~ e e
`
`~ e
`
`ol'-
`Ql!:
`-._J
`N
`
`J
`
`t
`
`Embedded wideband pilot
`
`Attached wideband pilot
`
`~
`
`~ 0
`tzJ a
`
`01
`01
`m
`......
`0
`0
`0
`I
`
`ro
`............ ro
`-.:z
`
`ol'-"" N
`""' oi'-
`~
`e
`N e
`0
`~
`
`N
`
`TDM
`
`TDM/FDM
`
`TDM
`
`TDMIFDM
`
`f
`
`FIG. 7
`
`ZTE/SAMSUNG 1005-0010
`
`
`
`-..) -c::: c:
`~ c: c:
`
`oj;o.
`QO
`-..)
`N
`
`("")
`"1:1
`
`~ .....
`c:::
`N c:
`0
`~
`
`N
`1.0
`oj;o.
`N
`oj;o.
`
`a:> ' ro
`
`ro
`
`~ 0
`tzJ a
`
`01 m
`m
`......
`0
`0
`0
`I
`
`Message associated with pilot sequence
`
`f
`
`1.25MHz
`7 5 subcarri1~rs
`
`Pilot sequence
`
`FIG. 8A
`
`ZTE/SAMSUNG 1005-0011
`
`
`
`-..) -c: c:
`~ c: c:
`
`oj;o.
`QO
`-..)
`N
`
`("")
`"1:1
`
`~ .....
`N c: c:
`0
`~
`
`N
`1.0
`oj;o.
`N
`oj;o.
`
`N
`~
`co
`
`~ 0
`tzJ a
`
`...,J
`01
`m
`......
`0
`0
`0
`I
`
`(12 subcarrif:rs within short block)
`Message associated with preamble
`
`f
`
`1.25MHz
`75 subcarriers
`
`Preamble
`
`FIG. BB
`
`ZTE/SAMSUNG 1005-0012
`
`
`
`wo 2007/142492
`
`PCT/KR2007/002784
`
`10/22
`
`FIG. 9
`
`RACH
`
`RACH
`
`t
`
`EVOLVED-0001658
`
`ZTE/SAMSUNG 1005-0013
`
`
`
`-..) -c: c:
`~ c: c:
`
`oj;o.
`QO
`-..)
`N
`
`("")
`"1:1
`
`~ .....
`N c: c:
`0
`~
`
`N
`1.0
`oj;o.
`N
`oj;o.
`
`.Short block allocation
`
`access
`Short block: RACH pilot allocation for RACH
`
`·~
`
`~ 0
`tzJ a
`
`\0
`01
`m
`......
`0
`0
`0
`I
`
`l\J
`l\J
`'-......
`I-'"
`.......
`
`r-----1
`
`'
`
`'
`
`r;J1
`'
`
`I
`'
`L______
`I RACR
`I
`.
`1
`r------
`
`~ Scheduled access pilot
`
`~...-...-~ RACH CQI pilot
`
`Frame
`
`Subframe(O.Sms)
`
`FIG. 10
`
`ZTE/SAMSUNG 1005-0014
`
`
`
`wo 2007/142492
`
`PCT /KR2007/002784
`
`t2/22
`
`FIG. 11
`
`Periodic
`prefix
`
`Repetitive sequence
`
`Repetitive sequence r: .I
`
`FIG. 12
`
`I.
`
`0
`
`~ 0
`Single CAZAC sequence
`I 0 I General CAZAC sequence of 0 ~ Conjugate CAZAC sequence of 1
`
`EVOLVED-0001660
`
`ZTE/SAMSUNG 1005-0015
`
`
`
`~
`
`~ e e
`
`~ e
`
`ol'-
`Ql!:
`--J
`N
`
`ol'-"" N
`""' oi'-
`~
`e
`N e
`0
`~
`
`N
`
`• • •
`
`+
`
`---8
`
`+
`
`ro
`ro
`'--...
`c.u
`.......
`
`--~
`
`+
`
`--e
`
`81105 r--and p~ak val~e if peak
`Select peak position and
`
`_
`not performed
`peak value tf conJugation ts f-----
`Measure pe~k po~itiol\ an9
`
`/
`
`Measure pe~k po~itio~ and
`
`r---
`
`blocks 1 and 2
`Identify CAZAC ID of
`
`81103
`
`-
`
`lS great
`
`._____ peak value if conjugation t--
`
`Measure peak position and
`
`1s performed
`
`~ S 1109 1------~eak value if peak value
`Select peak position and
`
`.
`r----peak value if conjugation ~--'---
`
`ts not performed
`
`Measure peak position and
`
`-~-
`81110
`
`• • •
`
`blocks 1' 2 and 3
`Identify CAZAC ID of f--
`
`.._
`
`81107
`
`~ 0
`tzJ a
`
`......
`m
`m
`......
`0
`0
`0
`I
`
`81108
`
`is performed
`
`· ~ peak value 1f conJugation ~--'---
`
`value IS great
`
`_L
`
`t-·
`
`..... Measure peak position
`
`and peak value
`
`of block: 1
`Identify CAZAC ID
`
`81101
`
`81102
`
`FIG. 13
`
`ZTE/SAMSUNG 1005-0016
`
`
`
`wo 2007/142492
`
`PCT/KR2007/002784
`
`14/22
`
`FIG. 14
`
`I. 0~ 0 ._
`
`Mixed CAZAC sequence having length of single CAZAC sequence
`
`[QJ CAZACl sequence of 0
`
`~ CAZAC2 sequence of 1
`
`EVOLVED-0001662
`
`ZTE/SAMSUNG 1005-0017
`
`
`
`-..) -c: c:
`~ c: c:
`
`oj;o.
`QO
`-..)
`N
`
`("")
`"1:1
`
`~ .....
`N c: c:
`0
`~
`
`N
`1.0
`oj;o.
`N
`oj;o.
`
`N
`N
`~
`Ol
`
`,_,
`
`S1508
`
`Sl507
`
`)
`
`-~ value of each
`
`Decode bit
`
`block
`
`. ~]
`
`corresponding block
`Identify group lD of
`
`S1506
`(
`\
`
`high frequency in generation
`Select two peaks having
`
`SI505
`
`I
`
`l -m-
`s not identified
`uence of which group
`~casure peak baS;,J ~,;
`
`\
`Measure peak
`
`S1502
`(
`
`FIG. 15
`
`l Identify group ID of
`m J
`~
`
`Sl504
`J --
`
`~~rrcsponding block
`
`Sl503
`(
`
`---------
`
`frequency in generation
`~aving high
`Select two peaks
`
`~ 0
`tzJ a
`
`w
`m
`m
`......
`0
`0
`0
`I
`
`ofblockn
`Identify ;~~en~~
`
`. . .
`
`____ ....,.
`
`Identify sequence ID I
`
`ofblock2
`
`~~~:~i ~cquonceillmm I
`
`/ e---
`Sl501
`
`ZTE/SAMSUNG 1005-0018
`
`
`
`wo 2007/142492
`
`PCT/KR2007/002784
`
`16/22
`
`FIG. 16
`
`(a)
`
`(b)
`
`00
`
`01
`
`10
`
`11
`
`'
`'
`I
`I
`I
`I
`I
`'
`!Delav!
`: durati<bn
`~
`
`00
`+
`
`01
`
`+
`
`10
`
`...L
`
`II
`
`11
`
`EVOLVED-0001664
`
`ZTE/SAMSUNG 1005-0019
`
`
`
`---1 = c
`~ c
`
`~
`"':1
`
`+-
`---1 oe
`N
`
`Sl708
`
`l\)
`l\)
`~
`----.:]
`•
`I
`
`of each block
`Decode bit value
`
`S1707
`(
`T
`
`l corresponding block
`,--_ -~dentify group lD of
`
`Sl706
`l
`
`frequency in generation
`Select four peaks having high
`--------a··----------
`
`Sl705
`1
`is not identified
`sequence of which group ID
`Remeasure peak based on
`
`r----------
`
`S1704
`T
`)
`
`corresponding block
`Identify group ID of
`
`81703
`
`ofblock n
`Identify sequence ID
`
`~ 0
`tzJ a
`
`01
`m
`m
`......
`0
`0
`0
`I
`
`high frequency in generation
`Select four peaks having
`
`l-
`
`....j
`
`-
`
`l~n--1--i-fy __ -_ sequence ID _]
`
`---····-
`
`bloek2
`
`ofblock 1
`Identify sequence ID
`
`S1701 -+-
`
`------r----
`---
`
`81702
`
`Measure peak
`
`N
`1.1::
` +-
`---1 --....
`N c c
`0
`~
`
`+(cid:173)N
`
`FIG. 17
`
`ZTE/SAMSUNG 1005-0020
`
`
`
`-...1 = c
`~ c
`
`~
`"':1
`
`+-
`-...1 oe
`N
`
`Time domain
`
`I
`
`t
`
`I
`I
`
`I
`I
`
`I
`
`I
`I
`
`Frequency domam
`
`Sequence 4(for,Duration 4)
`
`~ 0
`tzJ a
`
`m
`m
`m
`0 .....
`
`0
`0
`I
`
`Sequence 3(for,Duration 3)
`Sequence 2(for,Duration 2) -~
`Sequence l(for,Duration 1) ~ '
`
`l\)
`l\)
`~
`OJ
`1-'
`
`!
`
`Block4
`
`--+
`
`Block3
`
`...... r-
`
`Block2
`
`N c c
`0
`~
`
`-...1 -....
`
`N
`1.1::
` +-
`
`+(cid:173)N
`
`FIG. 18
`
`---··+ ... -----
`
`Block 1
`
`~ ·I· ·lr----+--~
`Duration! DurJiion2 Duration3 Dumtion4
`~-
`
`ZTE/SAMSUNG 1005-0021
`
`
`
`wo 2007/142492
`
`PCT /KR2007/002784
`
`19/22
`
`FIG. 19
`
`S1901
`I
`\
`
`Sequence reception
`
`Sl911
`\
`
`data estimation
`
`Sl903
`\
`! Detection of CAZAC
`I sequence ID
`I
`
`I
`
`S1909
`
`i Decoding of data order
`. and bit value from
`[ dete,cted peak values
`
`I
`
`Sl905
`\ I
`Full-correlation using
`detected CAZAC :D
`and receiving signal
`
`S1907
`\
`~
`I Detection of peak v~lues I
`I from correlation result
`
`EVOLVED-0001667
`
`ZTE/SAMSUNG 1005-0022
`
`
`
`wo 2007/142492
`
`PCT/KR2007/002784
`
`20/22
`
`FIG. 20A
`
`Base station
`
`1 User equipment I
`I
`I
`Access preamble (..:..message)
`'
`~l ============================================~>l S200 1
`I
`I
`82003 ~==============T=im=in~g~i=nb=o=rrn=a=ti=on==============~
`·j
`I
`Allocation of uplink data resource
`S2005 K<::::::=======================================l
`
`j
`
`1
`
`Transmission of uplink data
`~===================================::: .... ~---- S2007
`
`FIG. 20B
`
`Base station
`
`II
`
`
`
`Access preamble
`~==============================~. S2011
`
`Timing information and allocation of scheduling request resource
`
`82013
`
`scheduling request
`r===================================~~-- S2015
`
`......
`
`Allocation of uplink data resource
`S20 17 KC::-"":;::::=::==========:::::=:::=:::=:=================
`Transmission of uplink data
`~=============================================::::::::,.... I S20 19
`
`EVOLVED-0001668
`
`ZTE/SAMSUNG 1005-0023
`
`
`
`~ e
`
`~
`
`~ e e
`
`ol'-
`Ql!:
`--J
`N
`
`• ~~j~~~~~~Sign~urc~Signat~~-Si~~
`
`I
`
`Long CI\ZAC sequence
`
`-----------------------
`
`I
`
`Signature 3
`
`I
`
`Signature 3
`
`~ 0
`tzJ a
`
`\0
`m
`m
`......
`0
`0
`0
`I
`
`l\J
`l\J
`~
`.......
`l\J
`
`{/)
`
`0
`!U
`0
`B
`
`I-<
`
`10
`
`ol'-"" N
`""' oi'-
`~
`e
`N e
`0
`~
`
`N
`
`{/)
`(J
`<U
`0
`-1-"
`0
`,_,
`
`10
`
`{/)
`(J
`<1)
`0
`-+-'
`0
`I-<
`
`11
`
`rZl
`<t)
`<1)
`0
`-1-'
`0
`I-<
`
`L
`
`00
`
`FIG. 21
`
`------
`
`;----------
`
`Signature 4
`Si1,rnature 3
`Signature 2
`Signature 1
`
`--
`
`--
`
`ZTE/SAMSUNG 1005-0024
`
`
`
`-...1 = c
`~ c
`
`~
`'":I
`
`+-
`-...1 oe
`N
`
`---___ _j
`
`ognition (DFT)
`AZACID
`
`~-
`
`------
`
`recognition (LLR)
`Symbol
`
`Dc-intcrlcav~
`
`Channel dccodj~
`
`-
`
`___
`
`--,
`
`__ f
`
`ro
`~ ro
`ro
`ro
`
`-.--,
`
`------------~-----------------------
`
`-[ Si;ture mapping
`
`-~~aS~:j m-r~:::drr I -Intcrlcavcr
`
`~ 0
`tzJ a
`
`0
`...,J
`m
`......
`0
`0
`0
`I
`
`Measured data ~
`
`sequence
`
`1
`I
`I
`: Receiver
`,-
`
`CAZAC sequence
`
`N
`1.1::
` +-
`-...1 --....
`N c c
`0
`~
`
`+(cid:173)N
`
`FIG. 22
`
`I
`I
`I
`: Transmitter
`,---
`
`1
`
`•
`
`ZTE/SAMSUNG 1005-0025
`
`
`
`Electronic Patent Application Fee Transmittal
`
`Application Number:
`
`Filing Date:
`
`Title of Invention:
`
`METHOD OF TRANSMITIING DATA IN A MOBILE COMMUNICATION SYSTEM
`
`First Named Inventor/Applicant Name:
`
`Yeong Hyeon Kwon
`
`Filer:
`
`Lew Edward V. Macapagai/Maggie Wen
`
`Attorney Docket Number:
`
`2101-3596
`
`Filed as Large Entity
`
`U.S. National Stage under 35 USC 371 Filing Fees
`
`Description
`
`Fee Code
`
`Quantity
`
`Amount
`
`Sub-Total in
`USD($)
`
`Basic Filing:
`
`Pages:
`
`Claims:
`
`National Stage Fee
`
`National Stage Search -all other cases
`
`National Stage Exam- all other cases
`
`Claims in excess of 20
`
`Independent claims in excess of 3
`
`Multiple dependent claims
`
`1631
`
`1632
`
`1633
`
`1615
`
`1614
`
`1616
`
`1
`
`1
`
`1
`
`11
`
`4
`
`1
`
`330
`
`540
`
`220
`
`52
`
`220
`
`390
`
`330
`
`540
`
`220
`
`572
`
`880
`
`390
`
`EVOLVED-0001671
`
`ZTE/SAMSUNG 1005-0026
`
`
`
`Description
`
`Fee Code
`
`Quantity
`
`Amount
`
`Sub-Total in
`USD($)
`
`Miscellaneous-Filing:
`
`Petition:
`
`Patent-Appeals-and-Interference:
`
`Post-Allowance-and-Post-Issuance:
`
`Extension-of-Time:
`
`Miscellaneous:
`
`Total in USD ($)
`
`2932
`
`EVOLVED-0001672
`
`ZTE/SAMSUNG 1005-0027
`
`
`
`wo 2007/142492
`
`PCT /KR2007 /002784
`
`[CLAIMS]
`
`33
`
`1. A method of transmitting data on a random access channel in a mobile
`
`communication systetn, the 1nethod comprising:
`
`5
`
`generating a new code by multiplying a code sequence by an exponential sequence;
`
`and
`
`transmitting the new code sequence to a receiving side.
`
`2. The method of claim 1, wherein the code sequence 1s a CAZAC (constant
`
`10
`
`amplitude zero autocorrelation) sequence.
`
`3. The method of claim 1 or 2, wherein the code sequence is transmitted as a
`
`preamble.
`
`15
`
`4. A method of transmitting data by using a code sequence in a mobile
`
`communication system, the method comprising:
`
`conjugating at least one element included in at least one block of a code sequence
`
`divided by at least two blocks to indicate predeteuuined infouuation; and
`
`transmitting the code sequence, in which the at least one block is conjugated, to a
`
`2 0
`
`receiving side.
`
`5. The method of claim 4, wherein the code sequence is a CAZAC sequence.
`
`6. A method of transmitting data by using a code sequence m a mobile
`
`2 5
`
`communication system, the method comprising:
`
`EVOLVED-0001673
`
`ZTE/SAMSUNG 1005-0028
`
`
`
`wo 2007/142492
`
`PCT /KR2007 /002784
`
`generating a second code sequence indicating predetermined information by
`
`combining at least two first code sequences mapped with at least one information bit,
`
`34
`
`respectively; and
`
`transmitting the seco11d code sequenee to a receiving side ..
`
`5
`
`7. The method of claim 6, wherein the first code sequence is a CAZAC sequence.
`
`8. The method of claim 6, wherein, if each of the first code sequences is mapped
`
`with 'n' number of information bits, the at least two first code sequences are selected :from a
`
`10
`
`sequence group consisting of2n number of first code sequences.
`
`9. The method of claim 6, wherein the combination of the at least two fi~st code
`
`sequences is performed by summing the at least two first code sequences after giving
`
`predetermined delay to each of the at least two first code sequences.
`
`15
`
`10. A method of transmitting a code sequence in a mobile communication system,
`
`the method comprising:
`
`generating a combination code sequence by combining a base code sequence to at
`
`least one code sequence obtained by circular shift of the base code sequence; and
`
`20
`
`transmitting the combination code sequence to a receiving side.
`
`11. The method of claim 10, wherein each of the base code sequence and the at least
`
`one code sequence identifies one or more information bit.
`
`12. The method of claim 10, wherein the step of generating the combination code
`
`2 5
`
`sequence is performed in a frequency domain.
`
`EVOLVED-0001674
`
`ZTE/SAMSUNG 1005-0029
`
`
`
`wo 2007/142492
`
`PCT/KR2007/002784
`
`35
`
`13. The method of claim 10, wherein the step of generating the combination code
`
`sequence is performed in a time domain.
`
`5
`
`14. The method of claim 10, wherein the combination code sequence is transmitted
`
`through a random access channel (RACH).
`
`15. The method of claim 10, wherein the at least one code sequence is obtained by
`
`circular shift of the base code sequence as much as integer times of circular shift unit.
`
`10
`
`16. A method of transmitting a code sequence in a mobile communication system,
`
`the method comprising:
`
`generating a repetitive code sequence by repeatedly concatenating a first code
`
`sequence at least one or more times;
`
`15
`
`generating a cyclic prefix (CP) by copying a certain part of a rear end of the
`
`repetitive code sequence and concatenating the copied part to a front end of the repetitive
`
`code sequence; and
`
`transmitting the repetitive code sequence, 1n which the CP 1s generated, to a
`
`receiving side.
`
`20
`
`17. The method of claim 16, wherein the repetitive code sequence is transmitted as a
`
`preamble on a random access channel.
`
`18. A method of allocating a random access channel in a multi-carrier system, the
`
`method comprising:
`
`25
`
`allocating a random access channel to each of at least two consecutive frames in a
`
`EVOLVED-0001675
`
`ZTE/SAMSUNG 1005-0030
`
`
`
`wo 2007/142492
`
`PCT/KR2007/002784
`
`36
`
`way that frequency bands of the random access channels allocated to the at least two
`
`consecutive frames are not overlapped with each other; and
`
`transmitting allocation infonnation of the random access channels allocated to the at
`
`least t\~vo consecuti\le fra..-tnes to at least one user equipment.
`
`5
`
`19. The method of claim 18, wherein the frequency bands of the random access
`
`channels allocated to the at least two consecutive frames have a pattern which is periodically
`
`repeated.
`
`1 0
`
`20. The method of claim 18, wherein the allocation information includes a hopping
`
`pattern of the frequency bands of the random access cham1els allocated to the at least two
`
`consecutive frames.
`
`21. The method of claim 18, wherein the random access channels are uniformly
`
`15
`
`allocated to the at least two consecutive frames.
`
`22. The method of claim 18, further comprising allocating a channel region for
`
`transmission of a pilot sibllal at the user equipment to at least one sub-frame to which the
`
`random access channel is allocated.
`
`20
`
`23. The method of claim 22, wherein the user equipment trying to random access
`
`through the random access channel transmits a pilot signal through the channel region.
`
`24. A method of transmitting data by using a code sequence in a mobile
`
`2 5
`
`communication system, the method comprising:
`
`EVOLVED-0001676
`
`ZTE/SAMSUNG 1005-0031
`
`
`
`wo 2007/142492
`
`PCT/KR2007/002784
`
`37
`
`mapping each of a plurality of blocks having at least one bit of a input data stream,
`
`respectively to a corresponding signature sequence;
`
`multiplying a signature sequence stream, to which the plurality ofblocks are mapped,
`
`by a specific code sequence; and
`
`5
`
`transmitting the signature sequence stream multiplied by the specific code sequence
`
`to a receiving side.
`
`25. The method of claim 24, wherein the specific code sequence is a single CAZAC
`
`sequence.
`
`10
`
`26. The method of claim 24, wherein the specific code sequence is a sequence
`
`obtained by concatenating at least two different CAZAC sequences.
`
`27. The method of claim 24, wherein the signature sequence is an exponential
`
`15
`
`sequence.
`
`28. The method of claim 24, wherein the signature sequence is a Hadamard sequence.
`
`29. The method of claim 24, further comprising repeating each signature sequence
`
`2 0
`
`so as to match a length of the signature sequence stream, to which the plurality of blocks are
`
`mapped, with a length of the specific code sequence.
`
`30. The method of claim 24, wherein the signature sequence mapping is Gray
`
`mapping.
`
`25
`
`EVOLVED-0001677
`
`ZTE/SAMSUNG 1005-0032
`
`
`
`wo 2007/142492
`
`PCT /KR2007/002784
`
`1
`
`METHOD OFTRANSMITTINGDATA
`
`IN A MOBILE COMMlJNICAITON SYSTEM
`
`[DESCRIPTION]
`
`5
`
`TECHNICAL FIELD
`
`The present invention relates to a mobile communication system, and more
`
`particularly, to a method of expanding a code sequence, a structure of a random access
`
`chmmel and a method of transmitting data in a mobile communication system.
`
`lO
`
`BACKGROUNDART
`
`A user equipment uses a random access channel (RA CH) to access a network in a
`
`state that ~he user equipment is not uplink synchronized with a base station. A signal having
`
`repetitive characteristic in a time domain is used in the random access channel, so that a
`
`receiver easily searches a start position of a transmission signal. In general, the repetitive
`
`15
`
`characteristic is realized by repetitive transmission of a preamble.
`
`A representative exainple of a sequence for realizing the preamble includes a
`
`CAZAC (Constant Amplitude Zero Auto Correlation) sequence. The CAZAC sequence is
`
`expressed by a Di1~ac-Delta fL111ction in case of auto-correlation and has a constant value in
`
`case of cross-correlation. In this respect, it has been estimated that the CAZAC sequence has
`
`2 0
`
`excellent transmission characteristics. However, the CAZAC sequence has limitation in that
`
`maximum N-1 number of sequences can be used for a sequence having a length ofN. For this
`
`reason, a method for increasing available bits of the sequence while maintaining the excellent
`
`transmission characteristics is required.
`
`Meanwhile, there are provided various methods for transmitting data fi:om a random
`
`2 5
`
`access channel by using the CAZAC sequence. Of them, the first method is to directly
`
`EVOLVED-0001678
`
`ZTE/SAMSUNG 1005-0033
`
`
`
`wo 2007/142492
`
`PCT /KR2007/002784
`
`2
`
`interpret CAZAC sequence ID to message information. Assum.ing that data to be transmitted
`
`is a preamble, if a sufficient number of sequences that can be used as the preamble are
`
`provided, message passing can be perfonned with only CAZAC sequence ID without
`
`additional manipulation. However, since a method of transmitting additional information
`
`5
`
`should be considered in an actual synchronized RACH, problems occur in that there is
`
`difficulty in realizing a sufficient number of CAZAC sequence sets, and the cost required for
`
`search of a receiver increases.
`
`The second method is to simultaneously transmit CAZAC sequence and Walsh
`
`sequence by using a code division multiplexing (CDM) mode. In this case, CAZAC sequence
`
`1 0
`
`ID is used as user equipment identification information, and the Walsh sequence transmitted
`
`in the CDM mode is interpreted as message information. FIG 1 is a block schematic view
`
`illustrating a transmitter for realizing the second method. However, the second method has
`
`limitation in that even though the Walsh sequence is added to the CAZAC sequence, bits of
`
`message that can additionally be obtained are only log2N bits when the ·walsh sequence has a
`
`15
`
`lengthofN.
`
`The third method is to transmit CAZAC sequence and Walsh sequence in such a way
`
`to mix the Walsh sequence with the CAZAC sequence. In this case, CAZAC sequence ID is
`
`used as user equipment identification information, m1.d the \l.falsh sequence is interpreted as
`
`message information. FIG 2 is a block diagram illustrating a data processing procedure at a
`
`2 0
`
`transmitter for realizing the third method. However, according to the third method, since the
`
`Walsh sequence acts as noise in detection of the CAZAC sequence to cause difficulty in
`
`detecting sequence ID, there is limitation in that repetitive sequences should be transmitted to
`
`prevent the Walsh sequence from acting as noise in detection of the CAZAC sequence.
`
`The fourth method is to either give orthogonality between blocks constituting a
`
`2 5
`
`corresponding sequence by multiplying an exponential term by a CAZAC sequence or
`
`EVOLVED-0001679
`
`ZTE/SAMSUNG 1005-0034
`
`
`
`wo 2007/142492
`
`PCT /KR2007/002784
`
`3
`
`directly apply data modulation such as DPSK, DQPSK, D8PSK, etc. In this case, CAZAC
`
`sequence ID is used as user equipment identification infonnation, and the modulated
`
`sequence is den1odulated and then used as message infonnation. FIG 3A illustrates data
`
`modulation according to the fanner method of the fourth method, and FIG 3B illustrates data
`
`5 modulation according to the latter method of the fourth.
`
`Furthennore, the fifth method is to transmit CAZAC sequence by attaching a
`
`message part to the CAZAC sequence. FIG. 4A illustrates the case where a message (coded
`
`bit) is attached to the CAZAC sequence used as a preamble, and FIG. 4B illustrates the case
`
`where a message (coded bit) is attached to a sequence consisting of a predetermined number
`
`10
`
`of blocks to which orthogonality is given.
`
`However, the fourth method and the fifth method have a problem in that they are
`
`susceptible to change of channel condition.
`
`DISCLOSURE OF THE INVENTION
`
`15
`
`Accordingly, the present invention has been suggested to substantially obviate one or
`
`more problems due to limitations and disadvantages of the related art, and an object of the
`
`present invention is to provide a method of transmitting and receiving message between a
`
`user equip1nent and a base station by using a long sequence to maximize time/frequency
`
`diversity and alleviating performance attenuation due to channeL
`
`20
`
`Another object of the present invention is to provide a method of transmitting data
`
`through a code sequence in a mobile communication system, in which the quantity of data
`
`can be increased and the transmitted data becomes robust to noise or channel change.
`
`Still another object of the present invention is to provide a method of suggesting a
`
`structure of an efficient ran