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1 Nokia Siemens Networks RU30 BaseBand dimensioning rulesCompany Confidential
RU30 BaseBand dimensioning rules
Network Engineering
NWS LTE RA E2E SA NE WCDA
!"#0"#20!!
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2 Nokia Siemens Networks RU30 BaseBand dimensioning rules
Company Confidential
Contents
$eneral BaseBand dimensioning rules in RU30
RU30 Li%ensing as&e%ts
'SD(A in RU30
Common Control C)annels allo%ation rules
Lo%al Cell $rou&ing
'SD(A BTS &ro%essing set resour%e allo%ation
RU30 'W*SW des%ri&tion + ,le-i WCDA BTS and UltraSite WCDA BTS
'SU(A in RU30
'SU(A BTS &ro%essing set resour%e allo%ation
Ba%ku& slides
CS .oi%e o/er 'S(A
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3 Nokia Siemens Networks RU30 BaseBand dimensioning rulesCompany Confidential
$eneral dimensioning rules in RU30
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No changes:For pre Fle!i System "odle #el$1 %FS"&' (ase(and dimensioning
For )ltraSite %*S+,-*S+C' and .)&& %*S+F' (ase(and dimensioning
.)&& spported on #)2/ 0n op S* leel
n # dimensioning rles
$eneral dimensioning rules in RU30 !*21
Changes:
New licensing aspects for Fle!i System "odle #el$2#el C. licenses
5S6+,-5S)+, &S processing setsNew rles for 5S+, (ase(and dimensioning
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(ro%essing %a&ailit o4 Sstem odule Rel#2 is signi4i%antl in%reased
%omå to RU!0*RU20
Common Control C)annels dimensioning is similar as in RU!0*RU20&asic configrations %3cells-2/km or 8cells-1/km' are spported with
(ase(and resorces inclded in System "odle #el$2 capacity49 #el C. licenses are reired per each step
'S(A dimensioning a&&roa%) %)anges in %om&arison to RU!0*RU20&S processing steps are introdced %5S+, does not consme C.
licenses any more'5S6+,-5S)+, performance %throghpts; nm(er of actie sers'
improement
R55 dimensioning same as in RU20 6n Toel C. consmption same as in #)2/ 0n op
$eneral dimensioning rules in RU30 2*21
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RU30 Li%ensing as&e%ts
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Li%ensing as&e%ts !*71$eneral in4ormation
RU30 Li%ensing as&e%ts
No changes in Fle!i 5* #el$1 C. license concept
n #)3/ for Fle!i System "odle #el$2 C. license is alid for #traffic
5S6+, and 5S)+, schedlers %System "odle rel$2' do not consmeC. licenses
5S6+,-5S)+, will hae own capacity licenses that are calledrespectiely 8'SD(A BTS &ro%essing sets9and 8'SU(A BTS
&ro%essing set9
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Li%ensing as&e%ts 2*71Rel55 CE li%enses
Spported only (y Fle!i System "odle #el$1 and #el$2
For 5* rel$2 #el C. licenses defines ma!imm capacity for pre
# traffic
System "odle rel$2 5S+, schedlers do not anymore consme# C. licenses %e!cept ,=6C5 and S#& resorces > if needed'
n case when additional CCC5 resorces are reired %e$g$e!tended cell case' # C. licenses capacity is decreased (yamont of additional #el C. reired for CCC5 processing
5S+, schedlers allocated at System "odle rel$1 still consme C.
Rel55 CE li%enses
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Li%ensing as&e%ts 3*71$eneral in4ormation
RU30 Li%ensing as&e%ts
CE li%enses %onsum&tion:
CCC' resour%es i4 needed e#g# e-tended %ell %ase1
R55 users (S and CS ser/i%es1
A+DC' Asso%iated DC'1
SRB i4 needed;1
? 5S6+, serice %)@:# (earer; 6@:5S6+, (earer' = 1 #el C. in 6@ per ser neededA5S)+, data serice %)@:5S)+, (earer; 6@:5S6+, (earer' > no C. licenses needed
5S)+, oice serice %)@:5S)+, (earer; 6@:5S6+, (earer' > F6+C5 reired %no C.
licenses reired'
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Li%ensing as&e%ts "*71'SD(A BTS &ro%essing set
t is capacity reseration inside the System "odle #el$2 that allows allocatecertain amont of 5S6+, sers and 6@ throghpt
here are three types of 5S6+, &S processing set licenses > from 1 to 3
Cstomers can pt freely set 1 licenses or set 2 and set 3 licenses for increasinglicensed 5S6+, throghpt and ma!imm 5S6+, ser amont
5S6+, &S processing set licenses are incremental as # C. licenses$Note: 5S6+, processing set 1 licenses are always inclded into sets 2 and 3$ .$g$ when set 2 is
(oght ma!imm capacity is as set 2 defines %set 1 capacity is not smmed into set 2'
.ach 5S6+, &S processing set has certain capacity of sers and 5S6+,throghpt
+rocessing set does notgarantee the ma!imm ser amont and throghpt(t additional featres are needed > e$g$ 84=B,"; 1/-17 5S=+6SC5 codes;
'SD(A BTS &ro%essing set
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Li%ensing as&e%ts
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Li%ensing as&e%ts =*71'SU(A BTS &ro%essing set
'SU(A BTS &ro%essing set
5S)+, &S processing set is capacity reseration inside the #el$2 5* thatallows allocated certain amont of 5S)+, sers and )@ throghpt$
0ne type of 5S)+, &S processing set license with capacity of 24 5S)+, ).sor 7;9"(ps throghpt with one ). is aaila(le
# ).s can (e allocated into 5S)+, processing set 1 een there is no #C. license %1-2 s(nit D 24 #el$ C.'
5S)+, &S processing set does not ena(le peak )@ throghpts; (t it canlimit those %as 5S6+, &S processing set does for 6@ throghpt'$ For
achieing peak )@ throghpts cstomer needs to (y separate license forpeak throghpt featres like 5S)+, 18B,"$
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Li%ensing as&e%ts >*71'SU(A BTS &ro%essing set
5S)+, processingset
"a! nm(er of 5S)+,sers per &S
"a! 5S)+,throghpt per
&S
5S)+, &Sprocessing set 1
24 7;9 "(ps
0perator can actiate a few 5S)+, processing sets
e$g$ 8 ! 5S)+, &S processing set 1 %8?24 ).s D 144 ).s per &S;
8?7;9 "(ps D 34;9 "(ps'
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Li%ensing as&e%ts 7*71'S(A BTS &ro%essing set ? summar
5S6+, &S processing set 1: 32 sers and
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Baseand allo%ation &ro%ess
6ynamic allocated
resorces according
to traffic demand
Static allocatedresorces (ased on
aaila(le
configration and
commissioning
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'W in RU30 ? ,le-i WCDA BTS rel#2
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@n RU30 4ollowing ,le-i Sstem odules are a/ailale:
FS"& System "odle %#el$1 5*'
FS"C System "odle %#el$2 5*'
FS"6 System "odle %#el$2 5*'
FS". System "odle %#el$2 5*'
Numer o4 %ommissioned @nter4eren%e Can%ellation units (@C &ool1
'W in RU30 ? ,le-i WCDA BTS !*!21
RU30 Sstem odule Rel#2 BB %a&a%it 4or tra44i% use de&ends on:
'SD(A %ommissioned resour%es
Numer o4 %ells %ommissioned to Sstem odule Rel#2
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BaseBand resour%es allo%ation 2*!21Sstem odule rel#2 %a&a%it
System "odle #el$2 consist of certain nm(er of processing s(nits$
.ach s(nit can proide # processing resorces %# C.'; 5S6+,
processing resorces %5S6+, sers and throghpt' and 5S)+,
processing resorces %5S)+, sers and throghpt'$ ,dditionally each nit
can (e sed for CCC5 processing %e$g$ e!tended cell case' or work as
interference calclation nit$
n certain cases %i$e$ oerlapping' s(nits are a(le to process # sers
and proide 5S)+, processing resorces$
R55 CE'SU(A t)r#
users
'SD(A t)r#users
'SD(A
%ells
R55
CE
'SU(A
t)r#
users
.!emplary figres
'SD(A t)r#users
'SD(A
%ells
1 s(nit
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BaseBand resour%es allo%ation 3*!21Sstem odule rel#2 logi%al stru%ture
#)2/ System "odle rel$2 consists of C.
CE
.!emplary figres
R55 CE 'SU(A t)r#users
'SD(A t)r#
users'SD(A
%ells
R55
CE
'SU(At)r#
users
.!emplary figres
'SD(A t)r#
users
'SD(A
%ells
1 s(nit
#)3/ System "odle rel$2 consists of s(nits that proides different
fnctions according to aaila(le li%enses
CE CECECE+ S %a&a%it
re4erred in CE
+ S %a&a%it
%an e re4erred in:=R55 CE='SD(A t)r users
and %ells='SU(A t)r and
users
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'W in RU30 ? ,le-i WCDA BTS "*!21Sstem odule Rel#2 %a&a%it + numer o4 %ells
System "odle #el$2 #)3/ s(nits capacity depends on nm(er of
commissioned cells$ Formla (elow can (e sed to calclate nm(er of
aaila(le s(nits for traffic se %or CCC5 - interference cancellation
processing'
*here:
Nm(er of s(nits:
FS"CD8
FS"6D13
FS".D2/
Numer o4 a/ailale suunits Numer o4 suunits ? roundu& Numer
o4 %ells * 311
,aila(le resorces %s(nits' can (e sed for CCC5 processing; 5S6+, sers; thr$and cells processing; 5S)+, sers and thr$ processing; # sers processing and
interference cancellation processing
+lease note that each S" #el$2 contains CCC5 processing resorces reired for
&asic Configrations %e$g$ 8 cells-1/km or 3cells 2/km' inclded in system modle
capacity
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Nm(er of aaila(le s(nits for different cell configrations:
Numer o4 %ellsNumer o4 suunits
,SC ,SD ,SE
1 > 3 7 12 1
4 > 8 4 11 19
< > 2 1? 1? 18 1?
1/ > 12 1 1? 9 1? 17 1?
1? =,dditional s(nit for CCC5 resorces needed if one System "odle and
more than 8 cells
=,dditional CCC5 resorces are not reired if two System "odles
%cell range p to 1/km - 2=way #! diersity assmed'
.!amples when two System "odles:
1' FS". FS". - 1 @CE; 12 cells-1/km:
Nm(er of s(nits D 18 18 32 s(nits aaila(le
2' FS". %@CE1: 8cells-1/km' FS". %@CE2: 8cells-1/km'
Nm(er of s(nits D 19 19 38 s(nits aaila(le
3' FS"6 FS". - 1 @CE; 12 cells-1/km:
Nm(er of s(nits D 18 27 s(nits aaila(le
'W in RU30 ? ,le-i WCDA BTS
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'W in RU30 ? ,le-i WCDA BTS =*!21Sstem odule Rel#2 %a&a%it + numer o4 %ells
,ormula elow %an e used to %al%ulate t)e ma-imum Rel55 Sstem
odule Rel#2 %a&a%it Rel55 CE1
Numero4 a/ailalesuunits Numer o4 suunits ? roundu& Numer
o4 %ells * 31 ? 'SD(Asuunits ? (@C&oolsuunits1
Sstem odule Rel55 CE %a&a%it min Rel55CEli%enses F
Rel55CESuunit%a&a%it ; Numero4a/ailalesuunits11
W)ere:
'SD(Asuunits ? suunits dedi%ated 4or 'SD(A &ur&ose
(@C&oolsuunits ? numer o4 inter4eren%e %an%ellation units
W)ere:
Rel55CEli%enses ? numer o4 a/ailale CE li%enses
Rel55CEsuunit%a&a%it ? Rel55 CE suunit %a&a%it "7 Rel55 CE1
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'W in RU30 ? ,le-i WCDA BTS >*!21Sstem odule Rel#2 %a&a%it
Numer o4 %ells ,SC ,SD ,SE
#)2/ #)3/ #)2/ #)3/ #)2/ #)3/
1 > 3 !70 CE 2"0 Rel55 CE 35= CE = Rel55 CE =!2 CE 5!2 Rel55 CE
4 > 8 19/ C. 12 #el C. 38 C. 729 #el C. 812 C. 984 #el C.
< > 144 C. 8 #el C. 38/ C. 432 #el C. 7
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'W in RU30 ? ,le-i WCDA BTS 7*!21Sstem odule Rel#2 %a&a%it ? 'SD(A a%ti/ated
a-imum 'SD(A t)roug)&ut 4or Sstemodule Rel#2
'SD(A aseand %a&a%it'SD(A t)roug)&ut suunits1
0 &s 'SD(A s%)edulers not a%ti/ated
7" &s 2
!=7 &s 32
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'W in RU30 ? ,le-i WCDA BTS 5*!21Sstem odule Rel#2 %a&a%it ? 'SD(A a%ti/ated
he ma! # C. capacity of System "odle #el$2 with 5S6+, serice
actiated %at least one 5S6+, schedler actiated' can (e calclated
from the formla (elow %5S)+, not actiated':
Numer o4 %ells ,SC ,SD ,SE
1 > 3 132 #el C. 489 #el C. 9/4 #el C.
4 > 8 94 #el C. 42/ #el C. N-, 324 #el C. 88/ #el C.
1/ > 12 N-, 2
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'W in RU30 ? ,le-i WCDA BTS !0*!21Sstem odule Rel#2 %a&a%it ? 'SU(A a%ti/ated
5S)+, actiation does not consme any (ase(and resorces$
5oweer for 5S)+, sers and throghpt processing (ase(and
resorces %s(nits' needs to (e allocated (ased on crrent traffic need$
5S)+, (ase(and resorces allocation is performed in steps > so
called 5S)+, resorce steps$ 0ne step is eal to J of System "odlerel$2 s(nit$
5S)+, (ase(and capacity reseration is (ased on 5S)+, license
%5S)+, &S processing sets'
n case if # C. licensed (ase(and resorces are oerlapping
5S)+, licensed (ase(and resorces > oerlapped resorces can (e
dynamically e!changed (etween # and 5S)+, sers
0ne 5S)+, &S processing set license reires 2 5S)+, resorce
steps %1-2 s(nit'
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'W in RU30 ? ,le-i WCDA BTS !!*!21@nter4eren%e %an%ellation units
n case when nterference Cancellation featre is actiated; nterference
Cancellation nits %+C pool' needs to (e commissioned in order to performinterference cancellation for mapped 5S+, cells$
0ne +C pool reires one s(nit$ Nm(er of +C pool is commissioned
(y operator
0ne +C spports p to 8 cells %interference cancellation can (e done
simltaneosly in 3 selected (y &S cells'
Cells from one freency layer shold (e mapped to one +C pool
0ne +C pool spports p to 2 freency layers
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29 Nokia Siemens Networks RU30 BaseBand dimensioning rules
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Numer o4(@C &ool
Numer o4 %ells ,SC ,SD ,SE
1
1 = 3 94 #el C. 42/ #el C. 8 38 #el C. 3
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Lo%al Cell $rou&ing
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Lo%al Cell $rou&ing !*
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Lo%al Cell $rou&ing 2*
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Lo%al Cell $rou&ing 3*
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Lo%al Cell $rou&ing "*
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Lo%al Cell $rou&ing
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BaseBand Dimensioning
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'SD(A in RU30
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'SD(A s%)edulerS Rel#2 'SD(A s%)eduler !*21
0ne 5S6+, schedler spports:
)p to 24/ 5S6+, actie sers %6C - ""0 - legacy 5S6+, sers - mi!ed all5S6+, kind sers'
From 1 to 8 cells
6ifferent @CEs coering (ase(and capacity of S" with actiated 5S6+, schedler
5S6+, throghpt proided (y schedler depends on:,ctiated featresNm(er and type of &S processing sets %M sers and throghpt'5S6+, throghpt commissioning %&& resorces allocation'
'SD(A s%)edulers a/ailale 4or 'W Rel#! same as in RU!0*RU20
@n RU30 t)ere is onl one t&e o4 'SD(A s%)eduler wit) Sstemodule Rel#2
U& to 2 'SD(A s%)edulers are su&&orted wit) one S Rel#2
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'SD(A s%)edulerS Rel#2 'SD(A s%)eduler 2*21
'SD(At)roug)&ut
ste&s
a-imumt)roug)&ut 4or
'SD(A s%)eduler
/ / "(ps
1; 2; 3; 4; 7; 8 42 "(ps
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'SD(A s%)edulerDe4aults rules
'SD(A BaseBand resour%e allo%ation
e4ore SW u&date e#g# RU!0 RU201
Allo%ated t)roug)&ut 4or 'S(A
%ells RU301
Shared schedler for && efficiency42 "(ps allocated to eery two non=
""0 cells or two ""0 cells
Fll &ase&and42 "(ps allocated to eery two non=
""0 cells or one ""0 cell
"inimm &ase&and ,llocation
2?42 "(ps allocated to eery 1=8non=""0 cells or 1=3 ""0 cells
5S6+, 18 )sers per cell
Not aaila(le
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'SD(A s%)edulerinimum allo%ation rule
o assre optimal 5S6+, performance &S checks whether allocated for 5S6+,
resorces are appropriate for &S configrationn case when commissioned throghpt is too low in reference to nm(er of 5S6+,cells; &S preents to allocate lower 5S6+, throghpt (elow leel specified (yminimm allocation rle
""0 cells"inimm5S6+,
throghpt
Non=""0cells
"inimm5S6+,
throghpt
1=3 42 "(ps1=8 42 "(ps
4=8 128 "(ps
a(le (elow presents minimm allocation rle for 5S6+, schedler
S
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'SD(A s%)eduler'SD(A aseand reHuirements
n #)3/ 5S6+, schedler does not consme #el C. licenses (t depending on
commissioned 5S6+, throghpt limits nm(er aaila(le s(nitsa(le (elow presents com(ined 5S6+, throghpt for System "odle #el$2 and corresponding5S6+, (ase(and capacity tiliLation$
a-imum 'SD(A t)roug)&ut 4or Sstem odule Rel#2'SD(A aseand %a&a%it reser/ation
numer o4 suunits1
0 &s 'SD(A s%)edulers not a%ti/ated
"2 &s 2
7" &s 2
!2= &s 3
!=7 &s 3
2!0 &s "
27 &s =
"20&s =
"=2 &s >
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'SD(A s%)eduler'SD(A + ,ormula to %al%ulate 'SD(A Suunit Consum&tion
&ase&and capacity %s(nits' reired (y 5S6+, can (e calclated according to the
formla (elow:
S(nitsIforI5S6+, D "a! %#ond p %%2 ? ""0Icells non=""0Icells' - 8' 1' A
s(nitsIforI5S6+,Ithroghpt' Nm(erIofI@CEs ? /;27
5S6+,
+
S(nits
*here:
""0Icells D nm(er of 5S6+, cells with ""0 actiated
non=""0Icells D nm(er of 5S6+, cells withot ""0
S(nitsIforI5S6+,Ithroghpt D nm(er of s(nits (ased on commissioning %see
(elow'
Nm(erIofI@CEs D nm(er of @CEs coering System "odle #el$2 && capacity
'SD(A ) d l
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'SD(A s%)eduler'SD(A + ,ormula to %al%ulate 'SD(A Suunit Consum&tion
.!ample: = 3 3 3 configration; #elH2 S" O #F "odles; 1 @CE
= 5S6+, in f1 and f2; ""0 on f1; #elH on f3; 94 "(ps 5S6+, throghpt
""0Icells D 3 %""0 is on f1'
non=""0Icells D 3 %cells in f2 are 5S6+, non ""0 cells'
S(nitsIforI5S6+,Ithroghpt D 2 s(nits
Nm(erIofI@CEs D 1 @ocal Cell Erop
S(nitsIforI5S6+, D "a! % %#ondp %%2 ? P P' - 8' 1 ' A P' P ? /;27
D "a! %P A P' /;27 D P /;27 D P
S(nitsIforI5S6+, D "a! % %#ond p %%2 ? ""0Icells non=""0Icells' - 8' 1' A
s(nitsIforI5S6+,Ithroghpt ' Nm(erIofI@CEs ? /;27
8 5S6+, cells 3 ""0 cells
example!
!!
example!
!!
'SD(A ) d l
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'SD(A s%)eduler'SD(A + ,ormula to %al%ulate 'SD(A Suunit Consum&tion
.!ample: = 3 3 3 configration; #elH2 S" O #F "odles; 1 @CE
= 5S6+, in f1 and f2; ""0 on f1; #elH on f3; 94 "(ps 5S6+, throghpt
""0Icells D 3 %""0 is on f1'
non=""0Icells D 3 %cells in f2 are 5S6+, non ""0 cells'
S(nitsIforI5S6+,Ithroghpt D 2 s(nits
Nm(erIofI@CEs D 1 @ocal Cell Erop
3 s(nits de to ""0
S(nitsIforI5S6+, D "a! % %#ondp %%2 ? 3 3' - 8' 1' A 2' 1 ? /;27
s(nits de to 5S6+, throghpt
D "a! %3 A 2' /;27 D 3 /;27 D 3;27
S(nitsIforI5S6+, D "a! % %#ond p %%2 ? ""0Icells non=""0Icells' - 8' 1' A
s(nitsIforI5S6+,Ithroghpt ' Nm(erIofI@CEs ? /;27
8 5S6+, cells 3 ""0 cells
example!
!!
example!
!!
'SD(A ) d l
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'SD(A s%)edulerSummar
a-# numer o4 A%ti/eUsers &er 'SD(A
s%)eduler
a- numer o4 %ellsassign to 'SD(A
s%)eduler
a- s%)edulert)roug)&ut
24/%18 6C ""0 sers'
8 272 "(ps
a- numer o4 'SD(As%)edulers &er Sstem
odule Rel#2
a- numer o4 'SD(AA%ti/e Users &er
Sstem odule Rel#2
a- numer o4 'SD(A%ells &er Sstem
odule Rel#2
a- 'SD(A &eakt)roug)&ut &er Sstem
odule Rel#2 *
2 49/ %32 6C ""0sers' 12 %8 cell per schedler' 7/4 "(ps %278 "(psper schedlers'
System "odle #el$2 5S6+, schedler description
System "odle #el$2 description
a(les a(oe do not consider )+ ma! 5S6+, throghpt limitation
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'SD(A BTS (ro%essing Set resour%esallo%ation
'SD(A BTS ( i S t ll ti
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'SD(A BTS (ro%essing Set resour%es allo%ation
5S6+, &S processing set specifies:
"a!imm nm(er of 5S6+, sers
"a!imm 5S6+, throghpt
5S6+, processing
set
"a! nm(er of 5S6+,
sers per &S
"a! 5S6+,throghpt per
&S
5S6+, &Sprocessing set 1
32
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'SD(A BTS (ro%essing Set resour%es allo%ation
,aila(le 5S6+, &S processing set resorces are distri(ted among
5S6+, schedlers$6ifferent rles are sed for actie sers and throghpt distri(tion$
otal 5S6+, licensed throghpt is distri(ted among the aaila(le 5S6+, schedlers$
*hen the ma!imm licensed 5S6+, throghpt per schedler is calclated; it is diided (etween5S6+, schedlers proportionally to Q"a!imm hroghpt per 5S6+,R commissioned ales
%5S6+, hroghpt Step'f there are only 5S6+, +rocessing Set 1 licenses present in &S; the diision of licensed
throghpt will (e done for each schedler according to the following formla:
Scheduler_licensed_throughput = Round_down { Number_of_HSDP_Processing_Sets ! "
Scheduler_HSDP_throughput_step # $otal_number_of_HSDP_throughput_step_per_%$S& ' ! ()* +bps
f there are only 5S6+, +rocessing Set 2 and 3 licenses present in &S; the diision of licensed
throghpt will (e done for each schedler according to the following formla:
Scheduler_licensed_throughput = Round_down { Number_of_HSDP_Processing_Sets_ * , - !
Number_of_HSDP_Processing_Sets_ .& ! " Scheduler_HSDP_throughput_step #
$otal_number_of_HSDP_throughput_step_per_%$S& ' ! */ +bps
5S6+, throghpt:
'SD(A BTS (ro%essing Set reso r%es allo%ation
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'SD(A BTS (ro%essing Set resour%es allo%ation
otal licensed 5S6+, sers is controlled on &S leel and it can (e diided
(etween @CEs according to commissioned shares$
Commissioning share option %HSDP user share' defines the garanteed
5S6+, ser capacity for each @CE$
f commissioning is not done then ser amont will (e eally diided(etween @CEs$
For e!ample:
n case when 1 5S6+, &S processing set 3 license was (oght$ t means that aaila(le ser
amont is
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'SU(A in RU30Sstem odule Rel#21
'SU(A resour%es allo%ation
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'SU(A resour%es allo%ationSstem odule Rel#2
n #)3/ 5S)+, does not consme #el C. licenses$ he ma!imm (ase(and
resorces that can (e allocated for 5S)+, are descri(ed (y 5S)+, &S processingsets$
&ase(and resorces allocated for 5S)+, prpose can change dynamically; (ased
on crrent need %nm(er of actie sers and com(ined @1 throghpt of all 5S)+,sers' 5S)+, (ase(and resorce allocation is performed on step (asis
)p to two 5S)+, resorce steps can (e statistically commissioned for 5S)+,
0ne 5S)+, (ase(and resorce is called 5S)+, resorce step
0ne 5S)+, &S processing set reires 2 5S)+, resorce steps %1-2 s(nit'
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BaseBand resour%es allo%ation
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BaseBand resour%es allo%ation6/erla&&ing aseand resour%es
Rel55 CE li%enses 'SU(A BTS&ro%essing
sets
'SD(A%ommissioned
t)roug)&ut
System "odle #el$2
Free %nlicensed'
(ase(and resorces > not
aaila(le for # sers and
5S+, data sers
No li%ense o/erla&&ing s%enario
&ase(and resorces
aaila(le for # sers
BaseBand resour%es allo%ation
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BaseBand resour%es allo%ation6/erla&&ing aseand %a&a%it and stati% resour%es reser/ation
Rel55 CE li%enses'SU(A BTS
&ro%essing
sets
&ase(and resorces aaila(le for 5S)+,
sers only
0erlapping (ase(and capacity can (e
dynamically share (etween 5S)+, sers and# ser?
System "odle #el$2
#el sers
'SD(A
%ommissioned
t)roug)&ut
5S)+, sers
,or o/erla&&ing Rel55 CE li%enses and li%ensed 'SU(A resour%es %ommissioning %an e
&er4ormed in order to guarantee resour%es 4or 'SU(A#
N6TE: U& to two 'SU(A resour%e ste&s %an e stati%all %ommissioned 4or 'SU(A
6/erla&&ing s%enario
? # sers hae always higher priority
'SU(A resour%es allo%ation NRT 'SU(A users1
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'SU(A resour%es allo%ation NRT 'SU(A users1'SU(A reHuirements ? minimum li%ense reHuirements
Tale assumes typical se case when the maTority of the sers are downlink data dominated
and the remaining sers are )@ data dominated$
5S)+, &ase(and resorces %5S)+, resorce steps' dimensioning for N#
5S)+, sers shold (ased on the following rle:
For e!ample:
12 data 5S)+, sers with com(ined @1 throghpt D 34;9 "(ps
= 12 data 5S)+, reires:
=U 18 5S)+, resorce steps are reired for 5S)+, %4 s(nit' - 9 5S)+, &S processing steps
= 34;9 "(ps com(ined @1 5S)+, throghpt reires
=U12 5S)+, resorce steps are reired for 5S)+, %3 s(nit' - 8 5S)+, &S processing steps
5S)+, reired && resorces D ma!% )sersIreirementA hroghpt reirements' D ma!% 18 A 12' D
18 5S)+, resorce steps - 9 5S)+, &S processing sets
&& capacity"a! nm(er of5S)+, sers
"a! 5S)+,throghpt
2 5S)+,resorce steps
%1-2 s(nit'
24 7;9 "(ps
'SU(A resour%es allo%ation
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'SU(A resour%es allo%ation'SU(A reHuirements + minimum li%ense reHuirements
Note: .alues are under in/estigations
Tale &resents reHuired numer o4 'SU(A resour%e ste&s#a-imum t)roug)&ut and ma-imum user amount are N6T a%)ie/ed
simultaneousl$ n case ser amont is at ma!imm then throghpt is minimm and ice ersa > in case when throghpt is at ma!imm then
ser amont is at minimm %i$e$ one ser per license allocation'$
Tale assumes typical se case when the maTority of the sers are downlink data dominated and the remaining sers are )@ data dominated$
inimumnumer o4
data'SU(AUEs &er
s%)eduler
Baseand minimum de%oding %a&a%itI&sJ
27 " 232 250 3"7 "0= "=" #< 7 7#< 5 5#< !0
22 !< !< !< !< 2 2#< 3 3#< " "#< < >#< 7 7#< 5 5#< !0
>3 + 5= 2 2 2 2 2 2#< 3 3#< " "#< < >#< 7 7#< 5 5#< !0
5> + !20 2#< 2#< 2#< 2#< 2#< 2#< 3 3#< " "#< < >#< 7 7#< 5 5#< !0
!2! + !"" 3 3 3 3 3 3 3 3#< " "#< < >#< 7 7#< 5 5#< !0
!"#< 7 7#< 5 5#< !0
!=5 + !52 " " " " " " " " " "#< < >#< 7 7#< 5 5#< !0
!53 + 2!= "#< "#< "#< "#< "#< "#< "#< "#< "#< "#< < >#< 7 7#< 5 5#< !0
2!> + 2"0 < < < < < < < < < < < >#< 7 7#< 5 5#< !0
2"! + 2=" > > > > > > > > > >#< 7 7#< 5 5#< !0
33> + 3=0 >#< >#< >#< >#< >#< >#< >#< >#< >#< >#< >#< >#< >#< >#< >#< >#< 7 7#< 5 5#< !0
3=!+ 37" 7 7 7 7 7 7 7 7 7 7 7 7 7 7 7 7 7 7#< 5 5#< !0
37< + "07 7#< 7#< 7#< 7#< 7#< 7#< 7#< 7#< 7#< 7#< 7#< 7#< 7#< 7#< 7#< 7#< 7#< 7#< 5 5#< !0
"05 + "32 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5#< !0
"33+ "
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CS .oi%e o/er 'S(A
CS .oi%e o/er 'S(A
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CS .oi%e o/er 'S(ABaseand %a&a%it reser/ation
.ach GCS oice oer 5S+,H ser decrease nm(er of 5S)+, sers allowed (y5S)+, license %5S)+, &S processing set' and 5S6+, license %5S6+, &Sprocessing set'
5oweer from (ase(and resorces allocation point of iew; GCS oice oer 5S+,Hsers reire separate (ase(and resorces than N# 5S+, sers
herefore (ase(and capacity reseration proided (y 5S)+, &S processing set%s'and 5S6+, processing set%s' is not alid for CS oice oer 5S+, sers
CS .oi%e o/er 'S(A
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CS .oi%e o/er 'S(ABaseand %a&a%it reser/ation
GCS oice oer 5S+,H (ase(and resorces are allocated according to traffic demand(ased on the following priorities:
1' Not licensed System "odle rel$2 (ase(and capacity
2' # licensed (ase(and capacity
3' 5S)+, licensed (ase(and capacity
0ne GCS oice oer 5S+,H ser consmes && resorces (y amont correspondingto 1;17 #el C.
+lease note that GCS oice oer 5S+,H sers do not consme #el C. licenses
CS .oi%e o/er 'S(A
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CS .oi%e o/er 'S(ABaseand %a&a%it reser/ation
#el C. licenses5S)+, &S
processing
steps
&ase(and resorces aaila(le for 5S)+,
prpose can not (e allocated (y # sers
%e!cept first 5S)+, &S processing set %2
5S)+, resorce steps = U24 #el C.'
5S6+,
commissioned
throghpt
System "odle #el$2
)nlicensed (ase(and resorces > not
aaila(le for # sers and and N# 5S+,
sers$
!1 CS /oi%e o/er 'S(A users allo%ation ? unli%ensed aseand %a&a%it
&ase(and resorces aaila(le for # sers
(riorit !: CS /oi%e o/er
'S(A users are allo%ated
into unli%ensed aseand
%a&a%it
CS .oi%e o/er 'S(A
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CS .oi%e o/er 'S(ABaseand %a&a%it reser/ation
#el C. licenses5S)+, &S
processing
steps
&ase(and resorces aaila(le for N#
5S)+, sers can not (e allocated (y #
sers %e!cept first 5S)+, &S processing
set %2 5S)+, resorce steps = U24 #el
C.'
5S6+,
commissioned
throghpt
System "odle #el$2
21 CS /oi%e o/er 'S(A users allo%ation ? Rel55 CE li%ensed %a&a%it
&ase(and resorces aaila(le for # sers
@4 unli%ensed aseand %a&a%it not
a/ailale or alread o%%u&ied1 CS
/oi%e o/er 'S(A users are allo%ated
into Rel55 li%ensed aseand %a&a%it
CS .oi%e o/er 'S(A
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CS .oi%e o/er 'S(ABaseand %a&a%it reser/ation
#el C. licenses
&ase(and resorces aaila(le for N#
5S)+, sers can not (e allocated (y #
sers %e!cept first 5S)+, &S processing
set %2 5S)+, resorce steps = U24 #el
C.'
5S6+,
commissioned
throghpt
System "odle #el$2
31 CS /oi%e o/er 'S(A users allo%ation ? 'SU(A li%ensed %a&a%it
&ase(and resorces aaila(le for # sers
@4 unli%ensed aseand %a&a%it nota/ailale or alread o%%u&ied1 and Rel55
li%ensed aseand %a&a%it not a/ailale or
alread o%%u&ied1 CS /oi%e o/er 'S(A users
are allo%ated into 'SU(A li%ensed aseand
%a&a%it
#el sers
0erlapping (ase(and capacity can (e
dynamically share (etween 5S)+, sers and
# ser?
5S)+, &S
processing
steps
5S)+, sers
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'SU(A BTS (ro%essing Set resour%esallo%ation
'SU(A BTS (ro%essing Set resour%es allo%ation
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'SU(A BTS (ro%essing Set resour%es allo%ation
5S)+, &S processing set specifies:
"a!imm nm(er of 5S)+, sers "a!imm 5S)+, throghpt
5S)+, processing
set
"a! nm(er of 5S)+,
sers per &S
"a! 5S)+,throghpt per
&S
5S)+, &Sprocessing set 1
24 7;9 "(ps
+lease note that 5S)+, license %5S)+, &S processing set' does not assre
ma!imm throghpt to all sers simltaneosly (t it proides ma!immthroghpt %7;9"(ps' to one ser and minimm throghpt to all 24 sers
'SU(A BTS (ro%essing Set resour%es allo%ation
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'SU(A BTS (ro%essing Set resour%es allo%ation
,aila(le 5S)+, &S processing set resorces needs to (e distri(ted
among 5S)+, schedlers
f &ase&and pooling is sed then &S will diide 5S)+, licenses (etween @CEHs according to
commissioned share %HS0P user#throughput license share'$ Sm of @CE shares is always 1//$5S)+, licence share is performed with 5S)+, &S processing set licence granlarity$ f licenses cannot
(e share eally (etween @CEs; in that case &S will diide higher amont of licenses to @CE starting
from lowest @CE nm(er$ .$g$: if commissioned shares are 7/ - 7/ and there are 7 5S)+, licenses;
then @CE1 gets 3 licenses and @CE2 gets 2 licenses$
f 5S)+, schedler is present in (oth System "odles; in this case &S will
allocate 5S)+, licenses proportionally to (ase(and capacity for traffic se of
each system modle; with &S processing set granlarity$
+lease note that eery 5S)+, ser %)@:5S)+, (earer; 6@:5S6+, (earer'
consmes 5S)+, license %5S)+, &S processing set' and 5S6+, license
%5S6+, &S processing set'
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Common Control C)annels allo%ation
Common Control C)annels
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Common Control C)annels$eneral in4ormation
+rocessing of Common Control Channelsreires certain amont of #el C.$
n general nm(er of #el C. allocated forCCC5 processing depends on:
Nm(er of cells
Cell range
Nm(er of signatres Nm(er of #! (ranches
DL
1 ! +=SC5
1 ! S=SC5
1 ! +=CC+C5
1 ! +=C+C5
1 ! +C5
1 ! ,C5
3 ! S=SCC+C5
UL+#,C5
Cell with radis higher than 2/km is called.!tended Cell
CCC' allo%ation
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CCC' allo%ationCCC' reHuirements
#el$2 5* System "odles s(rack proides processing resorces for Common
Control Channel for (asic configrations:1 ? System "odle : 3 cells-2/ km %eg$ 111 with 2/ km cells'1 ? System "odle : 8 cells-1/ km %eg$ 222 with 1/ km cells'2 ? System "odle: 8 cells-2/ km %eg$ 222 with 2/ km cells'2 ? System "odle: cells-1/ km %eg$ 333 with 1/ km cells'2 ? System "odle: 12 cells-1/ km %eg$ 444 with 1/ km cells'
0ther configrations that can (e sered only with #el C. resorces inclded in
#elease 2 5* System "odles can (e determined with the formla (elow:
i= M of cells %1=8'
Cell range> ser cell radis referred in km ronded p to ne!t 7km
o4 signatures> ma! nm(er of pream(le signatres 1DV L DV4where:
2 way #!
/kmVrV8/km M of signatres D4
8/kmVrVD12/kmM of signatres D2
12/kmVrV19/km M of signatres D1
n case of 4 way #! diersity #!D4; else #!D2
=
=