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Page 1: ru30 wbts nsn

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1

RU30 WBTSDimensioning

Leandro Giuliodori – July 26, 2013

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2

Licensing aspects (1/3)General information

• In RU30 for Flexi System Module Rel.2 CE licenses are valid for R99 trac

• !S"#$ and !SU#$ sc%edulers &System Module rel.2' do not consume CE licenses

• !S"#$(!SU#$ )ill %ave o)n ca*acity licenses t%at are called res*ectively !SD"# BTS

$ro%essing se&s 'and !SU"# BTS $ro%essing se&(

• !SU#$ and !S"#$ sc%edulers located at System Module rel.+ &FSM,' still re-uires CE

licenses

RU30 Li%ensing as$e%&s

SM rel.2

!S"#$#rocessin sets

!SU#$#rocessin sets

Rel99CE

!SU#$ users ( t%rou%*ut / !SU#$ ,S #rocessin Sets

!S"#$ users ( t%rou%*ut / !S"#$ ,S #rocessin Sets

R99 &"C!1 $"C!' trac / Rel99 CE licenses

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3

Licensing aspects (2/3)HSDPA BTS processing set

HSDPA Processing Set Max number of HSDPA users per BTS Max HSDPA throughput per BTS

HSDPA BTS processing set 1 32 7,2 Mbps

HSDPA BTS processing set 2 72 21 Mbps

HSDPA BTS processing set 3 72 84 Mbps

*erator can activate com4ination of di5erent !S"#$ *rocessin sets

 e.. 2 x !S"#$ ,S *rocessin set 2 6 + x !S"#$ ,S *rocessin set 3 7 28 2 UEs ( 28 2+M4*s 6+82 UEs ( +8:;M4*s 7 2+< UEs ( +2<M4*s

!SD"# BTS $ro%essing se&

!SD"# BTS"ro%essing se& 2

!SD"# BTS"ro%essing se& 2

!SD"# BTS"ro%essing se& 3

=ote t%at !S"#$#rocessin Set + isnot ta>en intoconsideration)%en mixed )it%#rocessin Set2and(or Set 3

2)"S2* "S3

216 !SD"#users and126+$s

!SD"# BTS"ro%essing se& 1

!SD"# BTS"ro%essing se& 1

!SD"# BTS"ro%essing se& 3

"S3

-2 !SD"#users and./+$s

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;

Licensing aspects (3/3)HSPA BTS processing set (R3!"P1#"P2) $ s%mmar&

!S"#$ ,S *rocessin set +? 32 users and .2M4*s

!S"#$ ,S *rocessin set 2? 2 users and 2+M4*s

!S"#$ ,S *rocessin set 3? 2 users and :;M4*s

!SU#$ ,S *rocessin set +? 2; users or @.:M4*s

ne !SU#$ ,S *rocessin set license corres*onds to +1@ su4unit.

$4ove !SU#$(!S"#$ t%rou%*uts are *ea> air interface t%rou%*uts of ,S.

!SU"# and !SD"# BTS $ro%essing se&s

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@

BaseBan' reso%rces allocationS&stem o'%le rel2 logical str%ct%re

• RU20 System Module rel.2 consists of CE

• RU30 System Module rel.2 consists of su4units t%at *rovides di5erent functions

accordin to availa4le licenses

Exem*lary Aure

  S+ %a$a%i&yreerred in

S+ %a$a%i&y%an ereerred in-Rel99 CE-!S"#$ t%r1users-!SU#$ t%r andusers

Rel44li%enses

!SU"#&5r, users

!SD"# &5r,users, !SD"#

%ells

!SU"#&5r,users

Exem*lary Aure

!SD"# &5r,users, !SD"#

%ells

+ su4unit

Rel44li%enses

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<

H* in R3! $ +le,i *-DA BTSS&stem o'%le Rel2 capacit& . n%mer of s%%nits

• System Module Rel.2 trac ca*acity de*ends on num4er of commissioned cells.

 a4le 4elo) *resents num4er of availa4le su4units for trac use &or CCC! (interference cancellation *rocessin'

• $vaila4le resources &su4units' can 4e used for CCC! *rocessin1 !S"#$ users1 t%r. and

cells *rocessin1 !SU#$ users and t%r. *rocessin1 R99 users *rocessin and

interference cancellation *rocessin

• #lease note t%at eac% SM Rel.2 contains CCC! *rocessin resources re-uired for B,asic

ConAurations &e.. < cells(+0>m or 3cells(20>m' included in t%e System Module rel.2

ca*acity

Number ofcells

FSMC FSMD FSME

1 - 3 !" !#

4 – 6 $ !! !%

7 – " & !' # & !' !( & !'

1! – 12 !&!' % & !' ! & !'

7 $dditional su4unit for CCC! resources needed if one System Module and more t%an < cells(+0>m cellrane(2)ay Rx div.

Exam*le? +' FSME 6 FSME ( + DC1 +2 cells(+0>m?=um4er of su4units 7 +< 6 +<  32 su4units availa4le

2' FSME &DC+? <cells(+0>m' 6 FSME &DC2? <cells(+0>m'  =um4er of su4units 7 +: 6 +:  3< su4units availa4le

3' FSM" 6 FSME ( + DC1 +2 cells(+0>m?=um4er of su4units 7 9 6 +<  2@ su4units availa4le

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H* in R3! $ +le,i *-DA BTSS&stem o'%le Rel2 capacit& $ HSDPA acti0ate' 

In order to ac%ieve certain !S"#$ t%rou%*ut a**ro*riate 4ase4and resources need to 4e

allocated for !S"#$ *ur*ose.

U* to t)o !S"#$ sc%edulers can 4e activated at one System Module Rel.2. =ote t%at !S"#$

4ase4and ca*acity is common for 4ot% sc%edulers

!SD"#8suuni&s 9 !SD"#8&5roug5$u&8suuni&s * :umer8o8LGs 7 ;

o8Suuni&

%ere? =um4erGofGDC 7 num4er of DCs coverin System Module rel2 ,, ca*acity

Maximum HSDPA throughput forS)stem Mo*ule +el,"

HSDPA baseban* capacit)-HSDPA throughput subunits. 

/ MbpsHSDPA sche*ulers not

acti0ate*

%$ Mbps "

!(% Mbps 1

"" Mbps $

11( Mbps

$"/ Mbps (

/$ Mbps 2

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HSDPA sce'%ler S Rel2 HSDPA sce'%ler 

*erator can activate !S"#$ sc%eduler 4y !S"#$ t%rou%*ut ste* commissionin.•   %e follo)in !S"#$ t%rou%*ut ste* values are availa4le? from 0 u* to 3@

•   Eac% ste* refers to 12M4*s &e.. + 12M4*sH 2 +;1;M4*s1 etc'•   !S"#$ t%rou%*ut commissionin is o*tional and if not commissioned1 ,S )ill allocate

!S"#$ t%rou%*ut 4ased on t%e deaul& rules &*lease see next slide'

HSDPA throughput stepsMaximum throughput for HSDPA

sche*uler 

! HSDPA sche*ulers not acti0ate*

+1 21 31 ;1 @1 < 42 Mbps

1 :1 91 +01 ++1 +2 84 Mbps

+31 +;1 +@1 +<1 +1 +: 126 Mbps

+91 201 2+1 221 231 2; 168 Mbps

2@1 2<1 21 2:1 291 30 21! Mbps

3+1321 331 3;1 3@ 2"2 Mbps

!S"#$Gsc%edulerGt%rou%*ut 7Min !S"#$Gt%rou%*utGste* 8 .2 M4*s H Maximum t%rou%*ut for !S"#$ sc%edulerJ

%ere?!S"#$Gt%rou%*utGste* 7 commissioned sc%eduler t%rou%*ut Maximum t%rou%*ut for !S"#$7maximum

t%rou%*ut referred in M4*s for corres*ondin !S"#$ t%rou%*ut ste* from a4ove

 %e max !S"#$ sc%eduler ,, t%rou%*ut can 4e calculated )it% formula8 ?

8 =ote t%at !S"#$

licensed t%rou%*utmi%t limit !S"#$commissionedt%rou%*ut.

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HSDPA sce'%ler S%mmar& 

System Module Rel.2 !S"#$ sc%eduler descri*tion

System Module Rel.2 descri*tion

 a4les a4ove do not consider U# max !S"#$ t%rou%*ut limitation

Max, number of Acti0e 3sers perHSDPA sche*uler 

Max number of cells assign toHSDPA sche*uler 

Max sche*uler throughput

24!#16 D$ % M&M' (sers)

6 2"2 Mbps

Max number of HSDPAsche*ulers per S)stem

Mo*ule +el,"

Max number of HSDPAActi0e 3sers per S)stem

Mo*ule +el,"

Max number ofHSDPA cells per

S)stem Mo*ule +el,"

Max HSDPA pea4throughput perS)stem Mo*ule

+el," 5

248! #32 D$ % M&M'

(sers)12 #6 ce** per

sc+e(*er)"!4 Mbps #2"2 Mbps

 per sc+e(*er)

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rou* 2? cell values 31 ; and @rou* ;? cell value 9

rou* +? cell values 01 + and 2rou* 3? cell values <1 and :

Tcell gro%pingGeneral information

•  cell rou*in is used to rou* cells to t%e !S"#$ sc%eduler

•  cell rou*s + and 3 are %andled 4y t%e Arst sc%eduler in System Module Rel.2 and

 cell rou*s 2 and ; are %andled 4y t%e second sc%eduler System Module Rel.2.

•  %e same Cell values can 4e used 4y di5erent cells if t%ose are allocated to di5erent

fre-uency layers.

• it% "ual Cell !S"#$ feature 4ot% cells from one sector must %ave t%e same cell

value. =ote t%at )it% t%e dual cell feature1 t)o cells from t%e same sector need to 4eserved 4y t%e same sc%eduler and 4elon to t%e same DC.

• ne sc%eduler can %andle u* to t)o cell rou*s. If t%ere is only one cell rou* used1

six cells can 4e su**orted. If t%ere are t)o cell rou*s and one sc%eduler1 u* to t%ree

cells *er cell rou* can 4e su**orted &still u* to six cells are su**orted totally'.

•  %e *rinci*les of rou*in &maximum four Cell rou*s *er DC are *ossi4le' are as

follo)s?

S%5eduler1

S%5eduler2

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HSPA asean' reso%rces allocation inR3! . HSPA Processing Set

• !SU#$ license is called !SU"# BTS "ro%essing Se&

•  %e !SU#$ ,S #rocessin Set is a !SU#$ ,, resources reservation inside t%e FlexiSystem Module Rel.21 t%at allo)s for a certain num4er of !SU#$ users and !SU#$t%rou%*ut.

• !SU#$ 4ase4and resources allocation is *erformed in ste*s / so called !SU"# resour%es&e$s. ne ste* is e-ual to K of su4unit.

• + !SU#$ #rocessin Set corres*onds to +1@ su4unit

• + !SU#$ #rocessin Set allo)s to reac% @.:M4*s or  2; users

!SD"# &5r,users,

!SD"# %ells

!SD"# &5r,users,

!SD"# %ells

!SU"#li%ensed%a$a%i&y

!SU"#li%ensed%a$a%i&y

!SU"# &5r,users

!SU"# &5r,users

!SU"# BTS

"ro%essingse&

!SU"# BTS

"ro%essingse&

!SU"# BTS

"ro%essingse&

Unli%ensedBB %a$a%i&y

!SU"#li%ensed%a$a%i&y

Users<&5roug5$u&

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HSPA 'imensioningHSPA Processing Sets re%irements

In order to reac% simultaneously certain num4er of !SU#$ users and

certain com4ined D+ t%rou%*ut 1 t%e follo)in formula s%ould 4eused to calculate re-uired num4er of !SU#$ ,S #rocessin Sets

:umer o !SU"# BTS "ro%essing Se&s 9 ma) = !SU"# suuni&s < 1,> ? +inimumamoun& o !SU"# BTS "ro%essing Se&s @

+inimum amoun& o !SU"# BTS "ro%essing Se&s 9

 ma) = Roundu$ = :umer8o8!SU"#8users < 2/@ ? Roundu$=!SU"#8&5roug5$u& <

>,.@ @

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HSPA reso%rces allocation (2/2)HSPA re%irements for sim%ltaneo%s %sers an' tro%gp%t

2ms TTAD"!

Us

2ms TTAnoCD"!

Us

16#+

2ms TTA=D"! <noCD"!

Us@

10ms TTAD"!

Us

!SU"# s%5eduleraseand resour%es

or !SU"# da&a and SEoi%e oFer !S"# users

10ms TTAnoCD"!

Us

1 Suuni& or single16#+ &ransmi&&ing

U

10ms TTA noCD"!dimensioning &ale

10ms TTA D"!dimensioning &ale

2ms TTA D"!

dimensioning &ale

2ms TTA noCD"!Us

S Eoi%eoFer !S"#

1 Suuni& or 1. SEoi%e oFer !S"#

users

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HSPA s%%nits for 2ms TT "s+DP-H feat%re not acti0ate' or no.+DP-H capale "s (SRB on D-H)

 a4le *resents re-uired num4er of su4units for !SU#$ 2ms I noF"#C! UEs

te? Aures are tentative and )ill 4e conArmed after Anal veriAcation in *ilot *%ase

2ms TTA noC

D"! Us

 a4le assumes ty*ical use case )%en t%e maLority of t%e users are do)nlin> data dominatedand t%e remainin users are UD data dominated.

!SU"# suuni&s or 2ms TTA U in RU30 "1 =i&5ou& 16#+@

:umero

!SU"#Us$er

s%5eduler

H10+$s

10+$s

24+$s

/3+$s

>.+$s

-2+$s

.-+$s

101+$s

116+$s

130+$s

1/>+$s

1>4+$s

1-/+$s

1..+$s

203+$s

21-+$s

232+$s

2/6+$s

261+$s

2->+$s

240+$s

30/+$s

314+$s

333+$s

3/.+$s

362+$s

3-6+$s

341+$s

/06+$s

/20+$s

/3/+$s

//4+$s

/6/+$s

/-.+$s

/42+$s

>0-+$s

>22+$s

>36+$s

>>0+$s

>6>+$s

>.+$s

1 012@ 01@ 01@ 01@ 01@ =($ =($ =($ =($ =($ =($ =($ =($ =($ =($ =($ =($ =($ =($ =($ =($ =($ =($ =($ =($ =($ =($ =($ =($ =($ =($ =($ =($ =($ =($ =($ =($ =($ =($ =($ =($

2 012@ 01@ 01@ 01@ + +1@ +1@ +1@ +1@ =($ =($ =($ =($ =($ =($ =($ =($ =($ =($ =($ =($ =($ =($ =($ =($ =($ =($ =($ =($ =($ =($ =($ =($ =($ =($ =($ =($ =($ =($ =($ =($

3I/ 012@ 01@ + +1@ +1@ +1@ +1@ +1@ +1@ 2 21@ 21@ 21@ 31@ 31@ 31@ 31@ =($ =($ =($ =($ =($ =($ =($ =($ =($ =($ =($ =($ =($ =($ =($ =($ =($ =($ =($ =($ =($ =($ =($ =($

>I6 01@ 01@ + +1@ +1@ +1@ +1@ 2 2 2 21@ 21@ 21@ 31@ 31@ 31@ 31@ ; ;1@ ;1@ ;1@ @12@ @1@ @1@ @1@ =($ =($ =($ =($ =($ =($ =($ =($ =($ =($ =($ =($ =($ =($ =($ =($

-I. 01@ 01@ +1@ +1@ +1@ +1@ 2 2 2 2 21@ 21@ 21@ 31@ 31@ 31@ 31@ ; ;1@ ;1@ ;1@ @12@ @1@ @1@ @1@ < 1@ 1@ 1@ : =($ =($ =($ =($ =($ =($ =($ =($

4I10 01@ + +1@ +1@ 2 212@ 212@ 212@ 21@ 21@ 3 3 31@ 31@ 31@ 31@ ;1@ @ @ @ @1@ < < <1@ <1@ <1@ 1@ : : : :1@ 9 9 9 91@ 91@ 91@ 91@

11I12 01@ + +1@ +1@ 2 212@ 21@ 21@ 21@ 21@ 3 3 31@ 31@ 31@ ;1@ ;1@ @ @ @ @1@ < < <1@ <1@ <1@ : : : :12@ :12@ :1@ 9 9 9 91@ 91@ +0 +013I1/ + + +1@ +1@ 2 212@ 21@ 21@ 21@ 21@ 3 3 31@ 31@ 31@ ;1@ ;1@ @12@ @12@ @12@ @1@ < < <1@ <1@ <1@ : : : :12@ :12@ :1@ 9 9 9 91@ 91@ +0 +0

1>I16 + + 2 212@ 21@ 21@ 21@ 21@ 21@ 3 3 3 31@ 31@ 31@ ;1@ ;1@ @12@ @12@ @12@ @1@ < < <1@ <1@ <1@ : : : :12@ :12@ :1@ 912@ 912@ 912@ 91@ 91@ +0 +0

1-I1. + +12@ 2 212@ 21@ 21@ 21@ 21@ 3 312@ 31@ ; ; ; ;1@ ;1@ ;1@ @12@ @12@ @1@ <12@ <12@ <12@ <1@ <1@ <1@ : : : :12@ :12@ :1@ 912@ 912@ 912@ 91@ 91@ +0 +0

14I20 +12@ +12@ 2 212@ 21@ 21@ 21@ 21@ 3 312@ 31@ ;12@ ;12@ ;12@ ;1@ ;1@ ;1@ @12@ @1@ @1@ <12@ <1@ <1@ <1@ <1@ 1@ 1@ 1@ :12@ :1@ :1@ :1@ :1@ 9 912@ 912@ 912@ 91@ 91@ +0 +0

21I22 +12@ +12@ 2 212@ 21@ 21@ 21@ 21@ 3 312@ 31@ ;12@ ;12@ ;12@ ;1@ ;1@ ;1@ @12@ @1@ @1@ <12@ <1@ <1@ <1@ <1@ 1@ 1@ 1@ :12@ :1@ :1@ :1@ :1@ 9 912@ 912@ 912@ +0 +0 ++ ++

23I2/ +1@ +1@ 2 21@ 21@ 21@ 21@ 3 3 312@ 31@ ;12@ ;12@ ;1@ ;1@ ;1@ ;1@ @12@ @1@ @1@ <12@ <1@ <1@ <1@ <1@ 1@ 1@ :12@ :12@ :1@ :1@ :1@ :1@ 912@ 912@ 912@ +0 +0 +0 ++ ++

2>I26 +1@ +1@ 2 21@ 21@ 21@ 21@ 3 3 312@ 31@ ;12@ ;1@ ;1@ ;1@ ;1@ ;1@ @12@ @1@ <12@ <1@ <1@ <1@ <1@ <1@ 1@ 1@ :12@ :12@ :1@ :1@ :1@ :1@ 912@ 912@ +0 +0 +0 +0 ++ ++12@

2-I2. +1@ +1@ 2 21@ 21@ 21@ 21@ 31@ 31@ 31@ 31@ ;12@ ;1@ ;1@ ;1@ ;1@ ;1@ @12@ @1@ <12@ <1@ <1@ <1@ <1@ 1@ 1@ :12@ :12@ :12@ :1@ :1@ :1@ :1@ 912@ 912@ +0 +0 +0 +0 ++ ++12@

24I30 +1@ +1@ 21@ 21@ 21@ 3 312@ 31@ 31@ 31@ 31@ ;12@ ;1@ ;1@ ;1@ ;1@ ;1@ @12@ @1@ <12@ <1@ <1@ <1@ <1@ 1@ 1@ :12@ :1@ :1@ :1@ :1@ :1@ :1@ 912@ +0 +0 +0 +0 +0 ++ ++12@

31I32 +1@ +1@ 21@ 3 3 3 31@ 31@ 31@ 31@ ;12@ ;12@ ;1@ ;1@ @ @ @ @12@ @1@ <12@ <1@ <1@ <1@ <1@ 1@ 1@ :12@ :1@ :1@ 9 9 912@ 912@ 912@ +0 +0 +0 +0 +0 ++ ++12@

33I3/ 2 2 21@ 3 31@ 31@ 31@ 31@ 31@ ;12@ ;12@ ;12@ ;1@ @ @ @ @ @12@ @1@ <12@ <1@ <1@ <1@ <1@ 1@ 1@ :12@ :1@ :1@ 9 9 912@ 912@ 912@ +0 +0 +0 +0 +0 ++ ++12@

3>I36 2 2 21@ 3 31@ 31@ 31@ ; ; ;12@ ;12@ ;1@ ;1@ @ @12@ @12@ @1@ @1@ <12@ <12@ <1@ 12@ 12@ 12@ 1@ 1@ :12@ :1@ :1@ 9 912@ 912@ 912@ 91@ +0 +0 +0 +0 +0 ++ ++12@

3-I3. 212@ 212@ 21@ 3 31@ 31@ 31@ ; ; ;12@ ;12@ ;1@ ;1@ @ @12@ @12@ @1@ @1@ <12@ <12@ <1@ 12@ 12@ 12@ 1@ :12@ :12@ :1@ :1@ 9 912@ 912@ 912@ 91@ +0 +0 +0 +0 +0 ++ ++12@

34I/0 212@ 212@ 21@ 3 31@ 31@ ; ; ; ;12@ ;12@ ;1@ @12@ @12@ @12@ @12@ @1@ @1@ <12@ <1@ 12@ 12@ 12@ 1@ 1@ :12@ :12@ :1@ :1@ 9 912@ 912@ 91@ 91@ +01@ ++ ++ ++ ++ ++ ++12@

/1I// 21@ 21@ 3 3 ; ; ; ; ; ;12@ ;12@ ;1@ @12@ @12@ @12@ @12@ @1@ <12@ <12@ <1@ 12@ 12@ 12@ 1@ : :12@ :12@ :1@ :1@ 9 912@ 912@ 91@ +0 +01@ ++ ++ ++ ++12@ ++1@ +212@

/>I/. 21@ 21@ 3 31@ ; ; ; ; ;1@ ;1@ ;1@ @12@ @12@ @1@ @1@ @1@ @1@ <12@ <12@ <1@ 12@ 12@ 12@ 1@ : :12@ :1@ :1@ 912@ 912@ 91@ 91@ 91@ +01@ +01@ ++ ++ ++ ++12@ ++1@ +212@

/4I>2 3 3 31@ 31@ ; ;1@ ;1@ ;1@ ;1@ ;1@ ;1@ @12@ @12@ @1@ @1@ < <12@ <12@ <1@ <1@ 12@ 1@ 1@ 1@ : :12@ :1@ :1@ 912@ 912@ 91@ 91@ 91@ +01@ ++ ++ ++12@ ++12@ ++12@ ++1@ +212@

>3I>6 312@ 312@ ; ; ; ;1@ ;1@ ;1@ ;1@ ;1@ @12@ @1@ @1@ @1@ @1@ < <12@ <1@ <1@ 12@ 12@ 1@ 1@ :12@ :1@ :1@ 912@ 91@ 91@ +012@ +012@ +01@ +01@ +01@ ++ ++ ++1@ ++1@ ++1@ ++1@ +212@

>-I60 31@ 31@ ; ; ;1@ ;1@ ;1@ ;1@ ;1@ ;1@ @12@ @1@ @1@ @1@ @1@ < <12@ <1@ <1@ 12@ 12@ 1@ 1@ :12@ :1@ :1@ 912@ 91@ +012@ + 012@ +012@ + 01@ +01@ + 01@ + +12@ + +12@ + +1@ + +1@ ++1@ + 212@ + 212@61I6/ 31@ 31@ ; ;1@ ;1@ @ @ @1@ @1@ @1@ < < < < <12@ <1@ <1@ <1@ 12@ 12@ 1@ :12@ :12@ :1@ :1@ 912@ 91@ +012@ +012@ +012@ +012@ +01@ ++12@ ++12@ ++12@ ++1@ ++1@ ++1@ ++1@ +212@ +212@

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--I.0 ;1@ ;1@ ;1@ @ @ @1@ @1@ @1@ < < < <1@ <1@ 1@ 1@ 1@ 1@ 1@ :12@ :1@ 912@ 91@ 91@ 91@ 91@ 91@ +012@ +012@ +012@ +01@ ++ ++12@ ++1@ ++1@ +21@ +21@ +21@ +21@ +312@ +31@

.1I100 @1@ @1@ @1@ @1@ < <1@ 1@ : : : : : : :1@ :1@ :1@ 912@ 912@ 91@ 91@ 91@ +012@ +012@ +01@ ++12@ ++12@ ++12@ ++1@ ++1@ ++1@ ++1@ +21@ +21@ +21@ +31@ +31@ +;12@ +;1@ +;1@

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160I200 ++12@ + +12@ + +12@ + +12@ + +12@ + +12@ + +12@ + +12@ + +1@ + +1@ + +1@ +2 +21@ + 21@ + 21@ + 312@ + 31@ + ;12@ + ;12@ + ;12@ + ;1@ + ;1@ + ;1@ +@ =($ =($ =($ =($ =($ =($ =($ =($ =($ =($ =($ =($ =($ =($ =($ =($ =($

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MI=G!SU#$GSUGUS 3

$G!SU#$GSUGUS @

M$NG!SU#$GSUGUS <

#ERI"G"UR$I=GSUM +;;0

MI=GUSE"G,,GSU,U=IS

$GUSE"G,,GSU,U=IS +0

M$NGUSE"G,,GSU,U=IS +;

=UMG,,GSU,U=IS +3

C=FG!S"#$GUSERS 2+<

C=FG!SU#$GUSERS 9<

C=FG!S"#$G!R <3

C=FG!SU#$G!R 23

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20

",ample 1 (1/3)262627 +S"7 R3!"P2

BTS %onKgura&ion and &ra% reuiremen&s

• 26262H !S#$ at all cells  6 !S"# %ells  1) !SD"#s%5eduler

• !SU#$?

o ;<.; M4*s *er ,S

o ne !SU#$ +< O$M active user ( fre-uency layer& 2x ++.<M4*s *er ,S' 

 1 SU $er reuen%y layer

o !SU#$ Interference Cancellation &#IC' at every cell8  1 SU

• ;0 !S#$ users *er cell  2/0 !SU"# users  1)!SU"# s%5eduler reuired  1) LG

• +2< M4*s "D &2+M4*s *er cell? <;O$M 'H "C!S"#$

Baseand %a$a%i&yreuiremen&

!SU#$+<O$M? 2 users  2x+ SU!SU#$? 23.2 M4*s!S#$? 23: users#IC? < cells  + SU!S"#$? +2< M4*s  &3.2@SU' 2 * 4 * 1 * 32> 91>2> SU

 4 SU

Total resources required: 1>2> SU

FSME capacity (6 cells): 1. SU

What is left from BB resources after HSPallocatio!: 1. SU – 1>2> SU 9 2-> SU 2-> SU ) /. R44 9 132 R44 aFailale

FSM

DC

Fig. 1 Cells rou*into DC

Fig. 2 System Module )it%one DC

f+

DC

f2"C!S"#$

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2+

",ample 1 (2/3)262627 +S"7 R3!"P2

Su4unitsGforG!S"#$ 9 +a) MRound u$ ==2 7 +A+N %ells * nonC+A+N

%ells@ < 6@ * 1 ? Suuni&s8or8!SD"#8&5roug5$u& O * numer oLGs 7 02>

where:Su4unitsGforG!S"#$Gt%rou%*ut? num4er of su4units from a4le=um4erGofGDCs? num4er of DCs coverin System Module Rel.2 4ase4and ca*acity

!S"#$ re-uirement? 126+$s < 6 non8+A+N %ells

Suuni&s8or8!SD"# 9 +a) MRound u$ ==2 7 0 * 6@ < 6@ * 1 ?3 O * 1 7 02> 9 32> SU

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22

 Reuiremen&    23. !SU"# users !S"#

   232+$s

",ample 1 (3/3)262627 +S"7 R3!"P2

S

re.(ire