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Transcript of X-AFP Training Full
8/9/2019 X-AFP Training Full
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x-AFP Trainingx-AFP Training
8/9/2019 X-AFP Training Full
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Agenda (day 1)
• Tool Installation
– License Request
– Install full installatin – Install u!grades
– Installing "ulti!le #ersins (!tinal)
• The Optimi X environment
– $a! #ie%
– Layers "anager
– Pi#t ta&le
– 'dit sectr edit net%r
– Tas fl% "anager
• OptimiX Project Creation from RAW Data
– *!ti"i + Pr,ect reatin .u""ary
– P/ysical net%r traffic 0* R+AL R+L'3 i"!rtatin
– 4ata&ase rss 3alidatin
– 5.I Audit and "&ile "easure"ents cllectin
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• IM generation
– .can List generatin
– $$R i"!rtatin
– $ulti!le I$ "anage"ent
• IM validation
– 4ata&ase rss 3alidatin
– I$ relatins/i!s
– I$ nr"ali7atin
– Additinal Interference nstraints .u!!rt
– Predicted R+AL #s $easured R+AL
• Qo sim!lator
– .ettings – rrelatin re!rts
– Results analysis
• IM !pdate
– Interferers insertin
Agenda (day 2)
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Agenda (day 6)
• Optimi"ation
– 9et%r !ara"eters
– AFP settings (ex!lanatin f cnstraints)
– *!ti"i7a&le !ara"eters
– *!ti"i7atin csts• 4efault .ettings fr Ad-0c *!ti"i7er
• sts Per .ectr:Freq Re!rt
– 0.9:$AI* Planning – 50 and T0 Plan Re#ie%
– ;l&al Frequency Plan Re#ie%
– .i"ulatin %it/ t/e *!ti"i7ed Freq Plan
– .cring and c"!aring frequency !lans
• *!ti"i+ Additinal Features
• *!ti"i+ 4is!lays and Re!rts
• T0 Retune $et/dlgy <ey Pints
• .u!!rt Infr"atin
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Tl Installatin and License Inf
• .end e-"ail t license>!ti"i?c" t request a license• Install *!ti"i+
• Full Installatin• !grade t a ne% #ersin if yu already /a#e *!ti"i+ installed
• !y license file ?lic t t/e @*!ti"i*!ti"i + flder • Run *!ti"i+
• 4u&le clic n *!ti"i+?exe
• reate a s/rtcut fr *!ti"i+?exe n t/e dest!• .end e-"ail t *!ti"i License t get an acti#atin cde
• 4 nt /it A9'L n t/e acti#atin %ind%
• !y and !aste (r ty!e) t/e acti#atin cde• *!ti"i+ is running n yur lcal "ac/ine• If license ex!ires send an e-"ail t *!ti"i License t request a ne%
licenseB• Cu %ill need t attac/ yur license file ?lic• *!ti"i %ill send yu a ne% ?lic file t install
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T/e *PTI$I + 'n#irn"entT/e *PTI$I + 'n#irn"ent
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T/e *!ti"i + 'n#irn"ent
•
#o!r Main Windo$s to vie$% edit% and
modif& data'• patial vie$ (map vie$)• Tools*+ie$ (la&ers manager)
• Olap vie$ (pivot ta,le)• -dit sector% and net$or. vie$
(forms)
patial vie$% la&ers% forms% and pivot
ta,les are s&nchroni"ed
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T/e *!ti"i + 'n#irn"ent
Main Men!
/ Tool,ar
R!ns on all Windo$s Platforms
Men! Driven Application
Tool 0ar Availa,le for major
operations
patial +ie$
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T/e *!ti"i + 'n#irn"ent
• 1a&er Manager
It all%s users t ena&le:disa&le layers fr dis!lay suc/ as Plygnsrasters "a!s and !r,ect s!ecific !/ysical net%r RF . and Traffic data?
• 2et$or. Manager It all%s users t #ie% and access Pr,ect 9et%r Infr"atin in a
tree lie fr"at lie t/at f Hind%s 'x!lrer?
• Men! items It all%s uses access all $enu t/rug/ tree lie fr"at
1a&er Manager
2et$or. Manager
Men! Items
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T/e *!ti"i + 'n#irn"ent
• 4ca&le Tls:3ie%s
• ust"i7a&le tl&ars
• lred and dca&le "essage Lg
ser $essages are !resented
in different clrs de!ending n
t/e i"!rtance f t/e "essage
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+ie$ Pi#t Ta&le 9et%r ;.$ 50 distri&utin *R
Men! Items 1a&er 3ie% Pi#t Ta&le 9et%r ;.$ 50 distri&utin
T/e *!ti"i + 'n#irn"ent
Olap +ie$ (Pivot Ta,le)• n#enient %ay t select and filter
sectrs &ased n !ara"eter #alues
• All%s user t analy7e• Physical
• Network • RF • Traffic • QoS
4is!lay *nly@ ;rid ;ra!/ r 5t/?
'x!rt t@ .3 'xcel and 0T$L
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-dit .ectr @ or Men! Item 1a&er 'dit .ectr??
T/e *!ti"i + 'n#irn"ent
List f
sectrs
9a"e
uery
;ru!s
-dit ector +ie$
• 4is!lays t/e /ard and sft!ara"eters fr e#ery sectr
in t/e net%r• Ta& 4ri#en Fr"• 'diting f $ulti!le sites
su!!rted
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• Frequency Allcatins• 50:T0
• Add:Re"#e Frequencies• $A Lists
• 3ie%:'dit 0!!ing Lists
• .yste" Para"eters• 'dit .yste" Pr!erties
• Access $et/d• /annel Allcatin
• .!atial 3ie% .ettings• Ad,ust .!atial 3ie% :I
• Pi#t Ta&le• Ad,ust:'dit Pi#t ta&le 3ie%
.ettings
-dit 9et%r @ or
Men! Item 1a&er 'dit 9et%r @
T/e *!ti"i + 'n#irn"ent
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1=
Tas Fl% $anager
• T/e Tas Fl% $anager (TF$) is designed t si"!lify t/e na#igatin
f t/e tl "enu and t assist in t/e creatin f re!rduci&le
engineering !rcesses – *nce a Tas Fl% is defined it can &e distri&uted t t/er engineers
• 2 "des f !eratin
– $anager a&ility t define t/e ste!s needed t re!rduce a !rcess
– ser fll% t/e ste!s defined &y t/e "anager
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1D
Tas Fl% $anager
• reating a !rcess is
as si"!le as draggingand dr!!ing a "enuite" fr" t/e rig/t sidef t/e screen t t/e left
• All "enu ite"s in t/e
a!!licatin area#aila&le in t/e TF$including Pi#t Ta&lesand .!atial #ie%s
• 'ac/ Tas Fl% t/at
yu create is stred inan x"l file inNinstKflderO*!ti"i+syste"tas-te"!lates
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1E
4efault Para"eters i"!rtatin
• *!ti"i + !resents a grand #ariety f !ara"eters
t/at can &e tuned t ada!t x-AFP t a great#ariety f net%rs and situatins?
• *!ti"i7atin and:r si"ulatin !ara"eters can &ei"!rted (default?si" default?g!)
• I"!rtatin t current !r,ect and:r default
directry• ;reat ad#antageB c"!any s!ecific default
!ara"eters can &e distri&uted t its engineers
Default.SIM Default.GOP
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*PTI$I x-AFP !r,ect*PTI$I x-AFP !r,ectcreatin fr" RAH datacreatin fr" RAH data
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1G
File and Flder .tructure
• Prgra" files
– 4efault
• Pr,ects
– Rec""endatinB
• <ee! %ell rgani7ed
• *ne !r,ect !er significant c/ange
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!ying *rgani7ing data int flders
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*!ti"i + Pr,ect reatin .u""ary
• I"!rt P/ysical data&ase
– File I"!rt P/ysical Planet @• I"!rt ;ru! file r gru! files
– File I"!rt ;ru!s @
• Jany na"e?cs#
• I"!rt 9et%r nfiguratin – File I"!rt 9et%r ;.$ All
Alcatel@:'ricssn@ :0ua%ei@ :$trla@ :9ia@:9rtel@ :.ie"ens
• I"!rt $easured R+AL 4ata – File I"!rt . $easured ;.$ R+AL 'ricssn $RR:*!ti"i Alternate
– se Qint R+L'3:R+AL files Jany na"e?cs#
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*!ti"i + Pr,ect reatin .u""ary
• I"!rting 0* stats in *!ti"i Fr"at
– File I"!rt 9et%r ;.$ 0* unts *!ti"i @
• se in!ut file Jany na"e? net%r?gs"?/?cs#
• I"!rt Traffic 4ata in *!ti"i + Fr"at – File I"!rt Traffic 3ice ;.$ *!ti"i @
• se Jany na"e? traffic?#ice?gs"?cs#
• I"!rt T0 TR 4e"and – File I"!rt 9et%r ;.$ T0 4e"and *!ti"i @ – se file Jany na"e?net%r?gs"?tc/Kde"and?cs#
• I"!rt $a!inf Plygns:Rads – .elect 3ie% $enu Layer $anager t dis!lay t/e Layer $anager – I"!rt file – /ec t/e Plygn c/ec &x – /ec t/e Hld:$a!Pint c/ec &x
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*!ti"i + Pr,ect reatin .u""ary
• Run 5.I audit
• I"!rt Interference $atrix ($&ile $easure"ents) 4ata – File I"!rt RF $&ile $easure"ents
'ricssn@ : 9ia @ *t/ers – I"!rt *!ti"i Fr"at File I"!rt RF All
*!ti"i• se Jany na"e?cid file (I$ in *!ti"i + fr"at)
• ;enerating I$ fr" $&ile $easure"ents (if using $&ile$easure"ents) – x-AFP Interference $atrix Tls ;enerate I$
Fr" $&ile $easure"ents@
2oteB All I"!rts can &e dne t/rug/ t/e $enu Ite"s Layers als?
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I"!rt P/ysical data&ase
• File I"!rt P/ysical Planet @
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I"!rt P/ysical data&ase
• As a result f t/e i"!rtatin t/e fll%ing *!ti"i files are createdB
• J!r,ect-na"e?!/ysical?sectr?cs#• J!r,ect-na"e?!/ysical?site?cs#
• T/e list f cells in t/e !/ysical data&ase %ill decide t/e set f cells%e %ill &e %ring %it/?
• *t/er %ays t i"!rt !/ysical data&ase in *!ti"i + !r,ectB• File I"!rt P/ysical *!ti"i @• File I"!rt P/ysical ;eneric I"!rter @
• 0% t create *!ti"i+ !/ysical files• sing +L.• Fr" Hi7ard• Fr" Planet '3• Pega!lan@
hysical.sector.csPhysical.site.csv
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2D
I"!rting P/ysical 4ata&ase
3eneric Importer
• All%s user t s!ecify t/eP/ysical data&ase fr"at
t/rug/ t/e 4ata Fr"at Ta&
• All%s t $a!!ed !/ysicaldata&ase fields t *!ti"i x-
AFP fr"at t/rug/ t/e Field
$a!!ing Ta&?
• It als all%s t sa#e a
te"!late fr future use?
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2E
reate Alternati#e na"e fr .ectrs
5esides alternati#e site na"es users are n% als a&le t add alternati#e
na"es n sectr le#els?
T/e list f alternati#e na"es can &e i"!rted fr" t/e I"!rt $enuB
(FileI"!rtP/ysical Alternati#e 9a"e $a!???)
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reatin f ;ru!s
• *&,ecti#e:""ents – lassify sectrs in #arius gru!s (reate ?cs# file see sa"!le file fr"at)
– Cu "ay use any gru!s yu %uld lie? 'xa"!les includeB• T0KFrequencyK;ru!
• 50KFrequencyK;ru!
• 5.
• TR+s
• ell .tatus (*9-AIR r 9e%)
• I"!rt gru!s – File I"!rt ;ru!s @
• 'nsure all sectrs &elng t a gru! – se 3ie% Pi#t Ta&le 9et%r ;.$ All @
– 'nsure n gru! /as t/e !tin Snassigned
• Practice /% t select sectrs fr" #arius gru!s – Fr exa"!le sectrs %it/ .tatusU*n-Air
• reate gru!s %it/in t/e tl ('dit ;ru!@)
ample Groups Fil
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2G
I"!rt f 9et%r nfiguratin (I)
• I"!rt net%r cnfiguratin in
*!ti"i + – File I"!rt 9et%r ;.$ All 'ricssn
9A@:9ia +$L??:.ie"ens :$trla :Pega!lan
• Para"eter Filter • .ectrs Filters &y ;ru!
• In!ut 4ata Filter
• $ain *!ti"i + files – J!r,ect-na"e?net%r?gs"?sectr?cs#
(505.I$ALL:*L)
– J!r,ect-na"e?net%r?gs"?trx?cs# (T0 TR+ !er cell
$AI* T0 c/annel /!!ing ty!e)
– J!r,ect-na"e?net%r?gs"?"al?cs# (frequencies in eac/
$AL)
– J!r,ect-na"e?net%r?gs"?neig/&r?cs# (neig/&r list)
• 'xternal neig/&rs can als &e i"!rted fr"
Pega!lan
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Import Options
•$erge int urrent nfiguratin – !datesnet%r data fr t/e sectrs &eing i"!rted
• !date 0alted .ectrs – I"!rts data fr 0alted
.ectrs
• Preser#e existing neig/&r relatins/i!s – <ee!s
current neig/&r relatins/i!s in t/e !r,ectt/er%ise all neig/&r relatins/i!s are re"#ed
• Al%ays reate K0;RK1 .ectrs – /annel
;ru!s
• Preser#e unique "al definitin – Preser#es *..
$A Lists na"es?
• *ut!ut Recnciliatin 4ata – "!ares P/ysical
4ata %it/ 9et%r 4ata and !r#ides files %it/
differences &et%een t/e t%
I"!rt f 9et%r nfiguratin (II)
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9et%r 4ata (;.$) ntainsB
Pr,ect Frequency 5and.ectr 50 Frequencies
.ectr 5.I
.ectr TR+ Infr"atin
.ectr $A List
.ectr 0.9
I"!rt f 9et%r nfiguratin (III)
9et%r 4ata (9eig/&rs) ntainsB9eig/&r Relatins
0* unt and 0* .uccess V
50:5.I !air f 9eig/&r
'xternal 9eig/&r Inf can als &e #ie%ed
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Traffic data creatin fr AFP and .
• *&,ecti#e
– I"!rt Indi#idual .ectr 5usy 0ur (I.50) traffic data t use fr AFP?
– I"!rt traffic fr t/e Qint R+AL:R+L'3 recrding !erid fr I$#alidatin?
– reate t/e *!ti"i + fr"at
• $ulti!le traffic #alues !er cell?
• Tl a#erage ut traffic #alues and assigns it !er cell?
• I"!rting *!ti"i + traffic file
– File I"!rt Traffic 3ice ;.$ *!ti"i @
• $ain *!ti"i + files created
• J!r,ect-na"e? traffic?#ice?gs"?cs#
ample Trac Fil
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;enerating Traffic fr" .A0 Re!rts
• *&,ecti#e:""ents
– reate traffic data in *!ti"i + fr"at fr" Qint R+L'3:R+AL
– "!are esti"ated traffic fr" Qint R+L'3:R+AL %it/ traffic fr" s%itc/
• 0% t calculate 'rlangs fr" Qint R+L'3:R+AL re!rt
– '#ery "easure"ent re!rt /as a duratin f 8 "sec (;.$ .A0 !erid)
– If %e /a#e 1 re!rts recei#ed &y t/e cell site it "eans t/at t/e cell %as utili7ed fr
1W8 "secU8 secs U "inutes r $s
If t/ese re!rts %ere recrded during t/e entire day i? 28 /rs t/en
Traffic in 'rlangs U $s:(28WD "inutes) U =?== erlangs
– n#erting f .A0 $easure"ent Re!rts t .u&scri&er 'rlangs
Mo4s5 (6 of ACC7 Reports)8(9':;*<9) min!tes
Traffic(-) 5Mo4s*(<986 of 7o!rs of Recording)
– 9te t/at Traffic (') re!resents .u&scri&er 'rlangs i?e? des nt accunt fr 0R traffic
X=A#P pecial !tilities>
9u"&er f ttal /urs
r $RR:Rxual
recrdings
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4ata&ase rss 3alidatin
• 0% t identify incnsistencies – Recnciliatin files
– /ec !i#t ta&lesB Trx 4iagnstic .ectr diagnstic – Re#ie% sectrs %it/ n 50 n neig/&rs@ (.!atial 3ie%s)
– Re#ie% t/e *!ti"i + "essages in $sg Lg Hind%
– Run nsistency /ec *!tins tl
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6=
4ata&ase rss 3alidatin
• *&,ecti#es
– Identify data&ase incnsistencies a"ngstB• *9-AIR cells
• Traffic re!rt
• .%itc/ file
• Ty!ical data&ase incnsistencies:flags
– P/ysical 4ata&ase cells nt *n-Air
– *n-Air cells nt in P/ysical 4ata&ase
– *n-Air cells nt !resent in t/e traffic re!rt
– *n-Air cells in traffic re!rt &ut /a#e traffic
– ells in traffic re!rt carrying traffic &ut nt in !/ysical
(i?e? n-air cells nt flagged as n-air)
– All n-air cells need t /a#e a 50:5.I defined
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6D
Recnciliatin files
• I"!rt data recnciliatin
– 4ifference &et%een !r,ect and net%r files
Revie$??
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6E
4ata&ase rss 3alidatin
.e#erity and suggestin t fix
eac/ incnsistency are lgged
$ d R+AL d R+L'3 4 t
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6
$easured R+AL and R+L'3 4ata
• *&,ecti#e:""ents
– I"!rt $easured R+AL data !er cell
– I"!rt $easured R+L'3 data !er cell
– "!are $easured R+AL %it/ Predicted R+AL
– T/e c"!arisn %ill tell us /% accurately %e can !redict R+AL
• I"!rting $RR data – File I"!rt . $easured ;.$ R+AL 'ricssn
$RR@:9ia@:*!ti"i Alternate @t/ers
• $ain *!ti"i + files created
• J!r,ect-na"e?gs"?qs?"easured?cs#
• J!r,ect-na"e? ?gs"?qs?"easured?rx?,int?cs#
T ffi di / l d L:*L
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6G
Traffic s!reading n c/annel gru!s and L:*L
• se *!ti"i + S.!ecial tilities
– x-AFP .!ecial tilities .!lit Traffic 5et%een nderlays:*#erlays @• *&,ecti#e
– .!read traffic n c/annel gru!s
0* tt t d t ti
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0* atte"!ts data creatin• *&,ecti#e
– n#ert a re!rt f 4aily f 0* atte"!ts t an *!ti"i + fr"at
– *ut!ut is t/e a#erage daily f f 0* atte"!ts fr eac/ n&r relatins/i!
• *!ti"i + file created
– J!r,ect-na"e? net%r?gs"?/?cs#
• I"!rting 0* stats in *!ti"i +
– File I"!rt 9et%r ;.$ 0* unts *!ti"i @
• .!reading f 0* atte"!ts in t/e L:*L
–x-AFP
.!ecial tilities
.!lit 0andff .tatistics 5et%een nderlay:*#erlay
Sample HO File
I t f T0 TR ll
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I"!rt f T0 TRs !er cell
• *&,ecti#e
– ./% a sa"!le file t/at can &e used t i"!rt t/e f T0 TRs in
*!ti"i +• *!ti"i + file "dified
– J!r,ect-na"e? net%r?gs"?trx?cs#
• *!ti"i + file t &e i"!rted
– Jany na"e?net%r?gs"?tc/Kde"and?cs#
• I"!rting T0 TR de"and – File I"!rt 9et%r ;.$ T0 4e"and *!ti"i @
– T% *!tins $erge and A!!end
– 9te t/at if f T0 TRs is L'.. t/an current cnfiguratin t/en
TR+ is 9*T u!datedXXXX
TCH Deman File
5.I Audit (5efre running Recrdings)
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82
5.I Audit (5efre running Recrdings)
• *&,ecti#e
– Identify a list f cells %it/ clse -50-5.I reuse (J 1=
"iles:28 <")
– Retune t/e 5.I fr t/is set f cells
• se 5.I Re!rt in *!ti"i + t deter"ine t/e cells %it/ -50-
5.I reuseB
– 3ie%
Pi#t Ta&le
9et%r
;.$
*-50:5.Inflict Re!rt @
– 4istance is s!ecified in <" ( 4ist("iles) U 4ist(<"):1?D )
• .elect t !ti"i7e t/e 5.I *9LC fr cells %it/ -50-5.I
reuse J 1= "iles
• *!ti"i7e 5.I fr cells %it/ -50-5.I reuse J 1= "iles – x-AFP *!ti"i7atin
– .elect 5.I t !ti"i7ate
5.I Audit (.a"!le 5.I Re!rt)
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86
5.I Audit (.a"!le 5.I Re!rt)
5.I * ti i ti 4 f lt . tti
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88
5.I *!ti"i7atin 4efault .ettings
•Interference $atrix can &e used as interference surce (if I$ is a#aila&le)•If !re#ius !tin is used %/ile calculating t/e interference signal le#els t/e
!ti"i7er %ill cnsider t/e :I #alues fr" t/e !r,ect I$
5.I * ti i ti 4 f lt . tti
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8=
5.I *!ti"i7atin 4efault .ettings
Additional costs for second order relations@• 9eig/&r-9eig/&r • 9eig/&r-Interferer • 'xternal neig/&r-'xternal 9eig/&r
50 5.I cnflict reslutin
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8D
• 50 5.I cnflict re!rt i"!r#ed t !erfr" cnsistency c/ecs n
external neig/&rs and 2nd rder neig/&rsB
• Y2nd *rder 'xt 9&rsY c/ecs t/e cnflicts if t% sectrs t/at are neig/&r t sa"e
external cell s/are t/e sa"e 50-5.I c"&inatin
• Y2nd *rder 9&r-InterfY clu"n c/ecs if t/e YsectrY is a neig/&r f a c""n cell %/ile
Ysectr2Y is t/e interferer f t/at cell?
50 5.I cnflict reslutin
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8E
Interference $atrixInterference $atrix
(I$)(I$)
I$ .urces f ;eneratin
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8
I$ .urces f ;eneratin
• 4ri#e test I$• seful in !erfr"ing %/at-if scenaris i?e? RF c/anges can
&e dri#e tested t generate ne% I$ "atrix
• Ti"e intensi#e t cllect
• Require se#eral scanners running si"ultaneusly
• .%itc/ &ased I$• Pr#ides interference !icture exactly %/ere "&ile calls are
!laced
• Taes s"e ti"e t cllect (A!!rx 2 Hees)
• Pr!agatin "del I$• Fastest %ay t generate I$
• I$ can &e "dified i""ediately &ased n RF c/anges
• 0ea#ily de!endent n t/e accuracy f t/e !r!agatin "del
4ri#e Test I$
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8G
4ri#e Test I$
• PrsB
– Accurate R..I "easure"ents
– Pr#ides a #ery accurate :I descri!tin at e#ery "easured lcatin
– .er#ing area f t/e #icti" cell
• Inde!endent f t/e frequency assign"ent
• 5ased n t/e strngest R..I and /ysteresis #alue
• nsB
– 3ery ex!ensi#e and ti"e cnsu"ing
– R..I "easured n street le#el nly
• 4es nt tae in-&uilding "easure"ents
• .u&scri&er traffic distri&utin is unifr" alng rads
– Actual traffic nt re!resented
– *lder dri#e test equi!"ent cannt al%ays differentiate &et%een
interferers
– Incrrect 5.I r readings are liely t ccur
.%itc/ed 5ased I$
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=
.%itc/ed 5ased I$
•PrsB – 0ig/ accuracy (&ased n R..I "easure"ents n t/e !/ne) – Taes int accunt '+AT traffic distri&utin f su&scri&ers
• :I calculated exactly %/ere calls are !laced• Accunts fr su&scri&ers in &uildings
– Less ti"e and "ney – 9 need t define actual cell ser#ing areas – Taes int accunt
• 0. nderlay : *#erlay 0and#ers 9eig/&r relatins
•ConsB – 9 lcatin infr"atin i?e? crdinates – Interferer is identified &y 50-5.I – 5lind .!ts ften ccur
• Interference fr" sectrs %it/ sa"e 50• 'rrr decding 5.I if 3icti"-Interferer ZR.L is s"all• Acc!rac& of the IM is some$hat dependent on the 0IC plan• 50-5.I reuse needs t &e !ti"i7ed• .er#ing areas de!endent n frequency !lan
– A "a!!ing f 50:5.I t cell I4 is required – $issing neig/&rs and interferers
• *nly t/e D strngest interferers are re!rted (neig/&rs are a !ririty)• $ax f interferers !er #icti" cell is D8
Pr!agatin $del I$
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=1
Pr!agatin $del I$
• PrsB – If yu dn[t "del tune can &e fast and c/ea!?
– $st c"!lete I$ (unli"ited f relatins/i!s) – .er#ing area f t/e #icti" cell is inde!endent f t/e frequency !lan – 5ased n t/e strngest ser#er R.L Nd5"O and /ysteresis "argin – an &e used t fill in "issing data in t/er ty!es f I$
• nsB
– $del tuning can tae ti"e and "ney due t required dri#e"easure"ents – :I calculated le#els n t/e grund (des nt accunt fr su&s in
&uildings) – .u&scri&er traffic distri&utin is a &est guess
• Rads• lutter data&ase
– L% accuracy (de!endent n t/e accuracy f !r!agatin "del)• .tandard de#iatin U D t 12 d5
– .er#ing area &undaries are inaccurate – Relies n t/e accuracy f t/e site data&ase clutter file terrain file and
!r!agatin "del
.%itc/ed 5ased I$
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=2
.%itc/ed 5ased I$
• .te!s required t get a #alid I$B
1? ;enerate scan lists %it/in x-AFP
2? ;enerate and acti#ate s%itc/ c""ands t cllect
"easure"ents
6? I"!rt $$R files int x-AFP
8? ;enerate I$ %it/in t/e tl
=? 3alidate accuracy f I$
;enerate .can Lists
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=6
;enerate .can Lists
x-AFP !redictinsRelia&le 1st cut I$B
- !r!agatin tl- ld "easure"ent-&ased I$
x-AFP Scan List Generator…
;enerate .can Lists
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=8
;enerate .can Lists
• $ulti&andnet%rsB
– 5A lists %ill
cntain
frequencies fr&t/ &ands
• Acti#ate \Rtating
5ALs[
– %/en nu"&er f
50 c/annels
is greater t/an 62
;enerate .can Lists
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==
;enerate .can Lists
Sa!le" Scan List .i"ens5ALK?cs# file
#ne fol$er !er rotation
.%itc/ c""ands t cllect "easure"ents
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=D
.%itc/ c""ands t cllect "easure"ents
• 'xternal utilities can &e used?
• Practically sa"e a!!rac/ fr different #endrs?
• 5asically c""ands are in c/arge fB
– 4u""y neig/&rs creatin
– llectin !erid definitin (n a cell &asis)
– 4ifferent a!!rac/es t a#id #erfl% (.ie"ens)
– .t! "easure"ents after eac/ rtatin
–4elete du""y neig/&rs and !re!are fr nextrtatin
'xa"!leB .ie"ens
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=E
'xa"!leB .ie"ens
IMP1-M-2TATIO2 O# C1I CRIPT
– To Create an MMR collection rotation
1? Run WK!re!are?cli scri!ts n eac/ Radi ""ander
2? Run WKscaset?cli scri!ts n eac/ Radi ""ander
– To Reset CA o,jects d!ring a rotation
1? Run WKscareset?cli scri!ts n eac/ Radi ""ander
2? Run WKscaset?cli scri!ts n eac/ Radi c""ander
– To Delete an MMR collection rotation
1?Run WKscarest?cli scri!ts n eac/ Radi ""ander
2? Run WKdelete?cli scri!ts n eac/ Radi ""ander
I"!rt $$R files int x-AFP
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=
I"!rt $$R files int x AFP
• *&,ecti#e
– $atc/ $&ile $easure"ents ('ricssn 5AR 9ia 4A:F .ie"ens
.A) %it/ s%itc/ files – I"!rt $&ile $easure"ents File
– ;enerate I$ fr" $$ file
• *!ti"i + file created
– J!r,ect-na"e?rf?""?gs"?cs# ($$ file)
– J!r,ect-na"e?cid (*!ti"i+ I$)
• I"!rting $$ file
– File I"!rt RF $&ile $easure"ents ;.$ @
• ;enerating I$ fr" $&ile $easure"ents
– x-AFP Interference $atrix Tls ;enerate I$ Fr" $&ile
$easure"ents @
$&ile $easure"ents I"!rt
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=G
$&ile $easure"ents I"!rt
File I"!rt RF $&ile $easure"ents ;.$
'ricssn@ :$trla@ :9ia@ :.ie"ens@ :t/ers
.ie"ens $$R #erfl%
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D
.ie"ens $$R #erfl%
4etectin and crrectin
algrit/" /as &een intrduced
t .ie"ens $$R i"!rter t
/andle t/e #erfl% issues
%/ilst lading sie"ens $$R
files?
Y*#erfl% rrectinS c/ec&x intrduced n t/e .ie"ens
$$R i"!rter dialg It is rec""ended t acti#ate t/is
!tin t crrect t/e #erfl% in t/e
IR distri&utin cunts if t/ey
exceed t/e "axi"u" #aluesu!!rted in .ie"ens 5. .H
(D==6D)?
50-5.I $atc/ing rules
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D1
50 5.I $atc/ing rules
R1
R2
A
5
4
'F
Rule 1B• $axi"u" distance t
resl#e 50:5.I !airs
Rule 2B• If &eynd distance in Rule
1 a!!ly antenna
&ea"%idt/ t decide
Rules can &e extended t
discard unique "atc/es?
4es nt accunt fr !%erB
- Pr!agatin rec""ended
I"!rt Antenna 4ata
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D2
I"!rt Antenna 4ata
I"!rting Antennas
• File I"!rt Antenna Antennas Hi7ard@Tl I"!rts
• *!ti"i• Hi7ard• Pla9et• Pla9et '3• elPlan
sed Fr R1 and R2 Rules %/en i"!rting $&ile $easure"ents
If antennas nt a#aila&le• Tl default is 12] &ea"%idt/
Antenna are stred in t/e• syste"antenna-filessu&flder
7ori"ontal plane +ertical plane
$&ile $easure"ents I"!rt Lg
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D6
$&ile $easure"ents I"!rt Lg
• $essage lg
– 3erify t/at all relatins/i!s /a#e &een created and allinterferers /a#e &een resl#ed
$$R 4iagnstics (I)
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D8
$$R 4iagnstics (I)
T/is functinality all%s t/e users t analy7e aut"atically i"!rted "easure"ents
&ased n?B
• T/e 0* Percentage re!resented &y t/e I$ relatins?
• 9u"&er f cllectin days
• T/e a"unt f traffic !er sectr
?
$$R 4iagnstics (II)
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D=
$$R 4iagnstics (II)
Analy7ing eac/ f t/e !int "entined in !re#ius slide t/is functinality
esti"ates t/e nu"&er and t/e quality f $$R $easure"ents and scres
t/e" as Pr ;d r 'xcellent
$&ile $easure"ent Files
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DD
$&ile $easure"ent Files
Victim Total
Measurements
BCCH/BSIC Threshold 1 Threshold 2
DS100A 39000 233/23 123 23
DS100A 23000 23!/" 231 13!
DS100B 100! 212/3 390# 2$#9
.%itc/ed 5ased I$ using *!ti"i +
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DE
.%itc/ed 5ased I$ using *!ti"i +
• T% t/res/lds are set e?g? -6d5 and 12d5
– Assu"e ;aussian distri&utin f #alues – T/e user s!ecifies t/e relati#e t/res/lds f signal strengt/ &et%een t/e ser#ing and
"easured 5T.? – H/en a "easure"ent re!rts includes a :I J -6d5 cunter 1 is incre"ented and if it
is als &el% 12d5 cunter 2 incre"ents tget/er %it/ cunter 1? – Hit/ t/ese t% t/res/lds it is easy t fit a ;aussian cur#e and calculate t/e $ean
and .tandard 4e#iatin :I? Pr^+J-6d5_ and Pr^+J12d5_
;aussian u"ulati#e 4istri&utin
Pr ^+ J :I_
:I
;enerate I$
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D
;e e a e
x-AFP Interference $atrix Tls ;enerate I$ Fr"
$&ile $easure"ents
I$ can als &e i"!rted fr" different surcesB .ie"ens 'ricssn
Pega!lan@
$ulti!le I$ "anage"ent
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DG
! g
• Tl all%s t stre
:"anage se#eral I$ filesin t/e sa"e !r,ect?
• $anage I$ functinality
is a#aila&le fr"B
1? xAFP – Interference $atrix
Tls – $anage I$s@2? ;.$ .i"ulatin Para"eters
dialg
6? ;.$ *!ti"i7atin Para"eters
dialg
B
3ie% I$ Relatins/i!s
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E
!
Fr" 'dit .ectr 4ialg SRF Ta& *R *la! 3ie% *R .!atial #ie%
T/e \.urce[ !ara"eter re!resents t/e surce f t/e interference and it can/a#e #alues suc/ asB ADD-D (c!ied fr" t/ers r added in edit sectr)
M-A4R-M-2T (fr" $$R) PR-DICTIO2 (insert interferers feature)
M-A4R-M-2T AIC% P-3AP1A2% 42E2OW2 %>
I$ #alidatin
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E1
• ritical !art f retuning !rcess• 3alidatin Tests• Additinal Audits• 0% t i"!r#e I$
• ;enerate a "re c"!lete I$
I$ #alidatin tests
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E2
• 3alidatin Tests
– ells %it/ I$ relatins/i!s• 3ie% Pi#t Ta&le RF Interference $atrix I$.tatistics @
– ells %it/ #ery fe% I$ relatins/i!s (J =B rural cells indr!ic cells are ex!lained)
• 3ie% Pi#t Ta&le RF Interference $atrix I$
.tatistics @ – I$ relatins/i!s %it/ #ery fe% cunts (J =)
• 3ie% Pi#t Ta&le RF Interference $atrix I$.tatistics @
– Identify cells %it/ I.50 utside t/e recrding !erid – 9eig/&rs %it/ "issing I$ relatins/i!s
• 3ie% Pi#t Ta&le RF Interference $atrix I$9eig/&r (;.$) @
– nsistency /ec Re!rt• x-AFP nsistency /ec r FD
ells %it/ r fe% (J=) I$ relatins/i!s
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E6
ells %it/ r fe% (J=) I$ relatins/i!s
• 3ie% Pi#t Ta&le RF Interference $atrix I$ .tatistics @
• .rt &y S f Interferers
I$ relatins/i!s %it/ fe% I$ cunts (J=)
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E8
! ( )
• 3ie% Pi#t Ta&le RF Interference $atrix I$ 4etail@
• .rt &y S$in I$ unt
9eig/&rs %it/ "issing I$ relatins/i!s
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E=
• 3ie% Pi#t Ta&le RF Interference $atrix I$ 9eig/&r (;.$) @
• .rt &y S0* unt
ells "issing 0* data
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ED
g
• Identify cells %it/ f *T;*I9; 0* atte"!ts – 3ie% Pi#t Ta&le 9et%r ;.$ 9eig/&rs @ – .rt &y S0* cunts
nsistency /ec Re!rt
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EE
• ectors Tests
• Identify cell 9t in Interference $atrix and .ectrs %it/ J = Interferers – x-AFP nsistency /ec r FD
nsistency /ec Re!rt
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E
• Relationship Tests
• Identify cells in Interference $atrix &ut %it/ J 1 I$ cunts – x-AFP nsistency /ec r FD
I$ 3alidatin
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EG
• Additinal Audits
– I$ #alidatin #ia R+AL c"!arisn – I$ 9r"ali7atin – Additinal Interference nstraints Re!rt
I$ #alidatin #ia R+AL c"!arisn
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I$ #alidatin #ia R+AL c"!arisn
• se s!reads/eet Pr3s$rrrelatinTe"!late?xls"es %it/ *PTI$I x installatin N@O*!ti"i*!ti"i +su!!rt
• I"!rt $easured R+AL fr t/e date yu %ant t c"!are• I"!rt net%r cnfiguratin fr t/e sa"e date in *n-Air !r,ect• se traffic data fr t/e sa"e recrding !erid as t/e "easured
R+AL
• Run . si"ulatin t &tained !redicted R+AL? – x-.i"ulatr ;.$ .i"ulatin @ – .ee next slides fr rec""ended settings
• *#er#ie% f . .i"ulatr (%/ile si"ulatin is running)• 'x!rt t t/e Predicted #s $easured R+AL t use in
Pr3s$rrrelatinTe"!late?xls – 3ie% Pi#t Ta&le . R+AL Predicted #s $easured
@
!vM! Correlation Template
I$ 9r"ali7atin
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1
• 2e$ men!@
• x-AFP Interference $atrix Tls 9r"ali7e I$
• 2ormali"ation parameters@
• $ax .td? 4e#iatinB
Any relatins/i! t/at /as /ig/er #alue t/an t/is
#alue %ill &e nr"ali7ed?• :I "!arisn le#elB
sed t c"!ute a ne% "ean #alue fr #icti"-
interferer relatins/i!s t/at /as .T4 #alue a&#e
t/e "axi"u" defined in $ax .td? 4e#iatin?
• I$ 4estinatin
sers can select t stre t/e nr"ali7ed I$ in t/e
current !r,ect I$ r as an external I$ file?
I$ 3alidatin
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2
• 0% t i"!r#e I$
– Identify cells %it/ 50 utside t/e recrding !erid• I$ &ased n t/se recrdings "ig/t nt &e significant ut f t/e I.50
– 0efore t/e start f "easure"ents cllectin !rcessB• 5.I audit and 5.I !ti"i7atin
• Huld reduce 50-9-5 reuse and i"!r#e i"!rt $$R
– Run additinal recrdings fr 1-6 days – 'xtend t recrding !erid and try t ca!ture cell 50
• ;enerate "re c"!lete I$ – I"!rt ALL recrdings and !erfr" I$ #alidatin again
– Identify cells %it/ n r fe% I$ relatins/i!s• se lder I$ data t fill in suc/ /les
– 5lind s!ts
• se lder I$ data t fill in suc/ /les
. .i"ulatr
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6
• Generates %sers for each cell &ase$ on the
Poisson $istri&%tion 'offere$ erlangs(
• )hooses the ones that are not &locke$
• Assigns %sers on TR*s &ase$ on the channel
allocation an$ access etho$s.
• Generates fre+%encies for each TR* &ase$
on the GS, F algorith 'SN ,A/# FN(
• For each %ser in each cell it i$entifies all
sectors that ca%se co an$ a$0. interference.
• Generates a )1/ sa!le fro int. cell toser2ing cell $istri&%tion.
• )o!%tes the total1co!osite )1/
• ,a!s the )1/ to a 34R1R*Q5AL an$ F4R
• /f the F4R 6 F4R 7)R threshol$ the %ser is
$ro!!e$ an$ its +%ality not recor$e$.
• Re!eats that for each si%late$ %ser
• Then goes to the 8 n$ si%lation r%n.
• )ollects statistics for )1/ R*Q5AL F4R for
3)) T) an$ &oth co&ine$ .
3icti" .tatin
Pro,e Mo,ile
Interfering .ectr
Interfering .ectr
. .i"ulatr
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8
Simulations• For e2ery sector • For e2ery o&ile
# of Iterations• 5ser $efine$
Other parameters• A$0acent )hannel
Re0ection• )all $ro! 9F4R target • 7P) gain 5L an$ 7L• 7T* 5L an$ 7L• ,ini% RSL threshol$
ur#es 4ata
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=
,a!!ing • )1/ to 34R • )1/ to F4R • Relation )1/ to a QoS ,etric • Assigne$ to sector
• c%r2e.gs.sector file
,a!!ing f%nction of "• S!eech co$ec • ,o&ile s!ee$ • Ra$io channel
. .i"ulatr .ettings
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D
all 4r! F'RB T/is #alue
s!ecifies t/e F'R #alue at
%/ic/ calls are cnsidered
dr!!ed
P%er ntrl ;ain
su!!lies t/e !ara"etersneeded t accunt fr
!%er cntrl n T0
c/annels
4T+ Factr s!ecifies t/e
ti"e t/at a call is
trans"itting
$anage I$ all%s
t/e user t s!ecify
%/ic/ I$ %ill &e
used %/en running
t/e si"ulatr?
If t/is !tin is c/eced
t/e crrelatin results
are !resented n
se!arate s!reads/eet?
. .i"ulatr .ettings
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E
se R+L'3 – If
c/eced t/e
si"ulatr %ill tae
int accunt !r
quality due t l%signal strengt/
. .i"ulatr .ettings
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.!ecifies %/ic/ <PIs
%ill &e calculated &y
t/e si"ulatr? If a
&x is c/eced t/e
si"ulatr %ill
c"!ile stats fr t/e
gi#en <PI fr all
sectrs?
. .i"ulatr .ettings
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G
T/e sft%are %ill esti"ate
t/e nu"&er f $nte
arl runs needed t
"eet t/e cn#ergence
!ara"eters s!ecified in
t/e 'dit 9et%r
!ara"eters? Ty!ically t/is
crres!nds t a
cnfidence le#el f G=V
t/at yur si"ulatin
results are %it/in M:- 1V?
rrelatin Re!rt Analysis
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G
• R+ual Predicted 3s? $easured rrelatin
– Refine t/e Re!rt t #ie% Predicted $easured Pr- $r and `Pr-$r`
Ttal 'rlang – Refine Re!rt t #ie% Rxual =-E
rrelatin Re!rt Analysis
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G1
• 0% t '#aluate ResultsB• Re#ie% R$.' T/res/lds
• Re#ie% .catter /arts
• Re#ie% 5ar /arts
rrelatin Re!rt Analysis
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G2
rrelatin Re!rt Analysis
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G6
Predicted #s $easured Plt
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G8
se excel te"!late OR
3ie%Pi#t Ta&le. Rxual Predicted #s? $easured /art
rrelatin Re!rt Analysis
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G=
L at &t/ V sectrs and V
'rlangs? 5t/ f t/ese %ill gi#e
yu a gd indicatin f /% t/e
si"ulatr is !redicting quality in
yur net%r
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3ie% . Predictins Results
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G
" #$amine results usin% Spatial &ie'
" Spatial &ie' (G)I*+ Preicte !$,ual
+ C-I
+ F#!
+ TCH
+ CCH+ Com/ine
!date I$ Fr *!ti"i7atin
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GG
• !date I$
– Insert 5lind .!ts
• Pre#ius I$
• Predictins
– Insert relatins fr cells %it/ "issing r fe% I$
relatins/i!s• Pre#ius I$
– Insert Interferers fr ne% cells
• Predictins
5lind .!ts
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1
.ite 2
.ite 1
.ite 6
.ite 8
A
5
5
A
5
A
5
212
.ite D
5
212
218
226
2G
9eig/&r
9n -
9eig/&r
Insert 5lind .!ts Fr" *ld I$
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11
Insert Interferers@ r $enu Ite" Layer Insert
Interferers
Insert interferers
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12
Insert IM relationships for sectors $ith fe$ IM relationships
from O1D IM
Insert Interferers@ r $enu Ite" Layer Insert
Interferers
Insert Interferers
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16
Creating IM for ne$ sectors
Insert Interferers@ r $enu Ite" Layer Insert
Interferers
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18
*!ti"i7atin*!ti"i7atin
.etu! 9et%r Para"eters
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1=
• nfigure 50:T0
/annels
• nfigure $A Lists• nfigure .yste"
.ettings
-dit 2et$or. > or
Men! Item 1a&er -dit 2et$or. >
.etu! 9et%r Para"eters
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1D
• nfigure 50:T0 /annels
• nfigure $A Lists• nfigure .yste" .ettings
reate a 9e% $A list
t/at cntains all t/ea#aila&le frequencies
in T0
.etu! 9et%r Para"eters
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1E
• nfigure 50:T0 /annels
• nfigure $A Lists• nfigure .yste" .ettings
'dit .ectr AFP settings
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1
*!ti"i7a&le Para"eters
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1G
*!ti"i7a&lePara"eters
-dit ector > r Men! Item 1a&er -dit ector >
*!ti"i7a&le Para"eters
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11
'na&les users t gl&ally c/ange t/e T0 TR+ ty!e &et%een 55
0!!ing 55 0!!ing n 50 .C 0!!ing and Fixed
-dit ector > r Men! Item 1a&er -dit ector >
TRX Override
*!ti"i7a&le Para"eters (cnt?)
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111
ser selects %/ic/ #aria&les
t !ti"i7e@
*!ti"i7a&le Para"eters (cnt?)
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112
ser selects %/ic/ #aria&le
t !ti"i7e @
I"!rt:ex!rt 50 and T0 !ti"i7atin c/annels
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116
It all%s t/e user t ex!rt:i"!rt t/e current cnfiguratin
c/annels t &e used in t/e 50 an T0 !ti"i7atin• 50 /annels@
• T) )hannels…
File
Import Network GSM Valid Optimizable channels
*!ti"i7atin Para"eters (I)
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118
Optimi"ation Parameters• x-AFP *!ti"i7atin @
• ; t ;.$ Ta&
*!ti"i7atin Para"eters (II)
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11=
Optimi"ation Parameters• x-AFP *!ti"i7atin @
• ; t *&,ecti#e Ta&
*!ti"i7atin Para"eters (III)
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11D
Optimi"ation Parameters• x-AFP *!ti"i7atin @
• ; t *!ti"i7er Ta&
*!ti"i7atin Para"eters (I3)
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11E
Optimi"ation Parameters• x-AFP *!ti"i7atin @
• ; t 50:T0 Ta&
*!ti"i7atin sts
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11
• .ectr Heig/t W N nstraints M RF sts M 0andff csts O
• .ectr Heig/t U ser setting in t/e AFP ta& f 'dit .ectr
• nstraints U ser settings in t/e *!ti"i7er Ta&
• RF sts U 1 W Pr&a&ility f Interference W Traffic (If .!ecified)
• 0and *ff sts U N 9u"&er f 0* &et%een 3ictKInt !air : A#g f 0* &et%een 3ictKInt
!air in !r,ect O W .!ecified st
4efault .ettings fr Ad-0c *!ti"i7er
• Optimi"ation Parameters
*
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11G
– x-AFP *!ti"i7atin @
– ; t 50:T0 '#aluatin Ta&
– ; t t/e 50:T0 sts
– Press Ad#anced .ettings 5uttn
4efault .ettings fr Ad-0c *!ti"i7er
• Optimi"ation Parameters
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12
• Optimi"ation Parameters – x-AFP *!ti"i7atin @ – ; t 50:T0 '#aluatin Ta&
– ; t t/e Additinal sts – Press Ad#anced .ettings 5uttn
Ad 0c !ti"i7atin cst functin #isuali7atin
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121
T/e initial current and &est csts fr t/e Ad 0c !ti"i7erare gra!/ically !resented during !ti"i7atin !rcess
sts Per .ectr:Freq Re!rt
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122
Pi#t ta&le re!rts t/at re!resents t/e Ad /c *!ti"i7er csts n sectr &asisB
+ie$ Pivot Ta,le 2et$or. 3M
• A$ oc Fre+%ency )ost PT
• A$ oc 7etaile$ )ost PT
0!!ing layer !ti"i7er
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126
0.9:$AI* Planning
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128
0.9 !lanning• $axi"i7e distance &et%een -$AL -0.9
$AI* !lanning (*!ti"i7e *!tin)• A#id -c/annel T0 &et%een T0 TR+s%it/in t/e sectr
• A#id -c/annel T0 &et%een T0 TR+s%it/in sectrs f sa"e site
• A#id Ad,-c/annel T0 &et%een T0 TR+s%it/in t/e sectr
• A#id Ad,-c/annel T0 &et%een T0 TR+s
%it/in sectrs f sa"e site• If interference cannt &e a#ided interference
is !us/ed n /ig/er TR+ nu"&ers• Prduces rand" $AI* assign"ents
$AI* !lanning (Plan *!tin)• A#ids c-c/annel and ad,acent %it/in TR+s
f sa"e sectr and sa"e site
• If nt !ssi&le t/en "aes n effrt?• Assigns $AI*s using a !attern• se t/is nly if yu are certain t/at c and
ad,acent can &e a#ided?
50 and T0 Plan Re#ie%
• ;enerate /annel reuse re!rt
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12=
– 3ie% Pi#t Ta&le 9et%r ;.$ /annel Reuse @ *R – File 'x!rt 9et%r ;.$ 4etailed /annel Reuse @ – se File 'x!rt fr a large !r,ect %/en T0 !lan !resent ("uc/ faster)
• 50 Plan Re#ie% – Identify %rst *-50-50 reuse relatins/i!s
• .rt &y %rst R+AL=-E• Ignre reuse %it/ R+AL=-E J ?1V
– Identify clsest *-50-50 reuse relatins/i!s• .rt &y clsest distance• Pay attentin t relatins/i!s %it/ 9* I$ data ($ean U EEE)
– Perfr" #isual s!t c/ecs f t/e *-50-50 reuse• 3ie% .!atial Layers .ectr 9et%r ;.$ 50 • 3ie% .!atial Layers .ectr RF Interference $atrix 4L Interferers
Ptential 4L -/annel Interferer $ean – 50-50-* dis!lays interferers t/at /a#e *-50-50 reuse
• T0 Plan Re#ie% – Identify %rst *-T0-T0 reuse relatins/i!s
• .rt &y %rst R+AL=-E
• Ignre reuse %it/ R+AL=-E J ?1V – Identify %rst *-T0-T0 9eig/&rs
• .rt &y /ig/est 0* .e#erity (llisin Pr&a&ility in V) – Perfr" #isual s!t c/ecs f t/e *-T0-T0 reuse
• 3ie% .!atial Layers .ectr 9et%r ;.$ $AL Reuse• 3ie% .!atial Layers .ectr 9et%r ;.$ :I during 0* (d5)
9et%r Frequency Retunes
. i F Pl
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12D
• .cring Frequency Plans – File 'x!rt 9et%r ;.$ Frequency Plan ;l&al $etrics @
• nsult sa"!le I$P*RTA9TK #reF!enc&Plan3lo,alMetrics'Gls• nsult file #reF!enc& Plan Comparison Metrics'Gls
;l&al Frequency Plan Re#ie%
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12E
• Tls *!tins• Tls Re!rts AFP "!are FP;[email protected] t/e lcatin f t/e
!r,ect %it/ t/e actual
frequency !lan
T/is is %ay t quantify and quality distinct frequency !lans• *!ti"i x-AFP all%s t c"!are t% frequency !lans using t/e "!are FP;$ !tin
.i"ulatin %it/ t/e *!ti"i7ed Freq Plan
• As t/e I$ /as &een
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12
• As t/e I$ /as &een
c/anged after intrducing
interference fr"5linds!ts and fr t/e ne%
cells
• 'x!rt t/e !i#t ta&le .
Rxual Predicted
– Filtered ut &y \Rxual =-E[ – ./% nly \Predicted[ and
\Ttal 'rlangs[
"!arisn Te"!late
• .i"ulatins f u! t D different freq !lans can &e
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12G
• .i"ulatins f u! t D different freq !lans can &e
c"!ared in t/e te"!late \$ulti!lan"!ariti#e.cring?xls[
(N@O*!ti"i*!ti"i +su!!rt)
4ata t &e !asted fr"
t/e !i#t ta&le .
Rxual Predicted
'ac/ freq !lan si"ulatin
"ust &e !asted inPred. ta&s
"!arisn Te"!late
• 4ifferent ta&s t scre t/e frequency !lans
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16
• 4ifferent ta&s t scre t/e frequency !lans
Percentage f sa"!les %it/ Rxual
=-E
Percentage f
cells
'x!rts
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161
• 4elta re!rts• sed t c"!are 2 !r,ects %/en it c"es t t/e !/ysical and
net%r infr"atin• 9et%r
• Hi7ard /annel Plan• 4etailed /annel Reuse• $issing 9eig/&rs• 9ext 5est /annels
• 'ricssn 9A• .ie"ens A.• 9ia /annel Plan• Frequency Plan ;l&al $etrics• 9eig/&r 4iagnstics• .ie"ens /annel Plan• $a! Inf Ta&le
• Pega!lan /annel Plan• *!ti"i7a&le /annels
•*.• Predicted uality• Predicted #s? $easured uality
'x!rtsB 4elta re!rts
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162
• File 'x!rt 4elta re!rts @
'x!rtsB 'ricssn 9A u!date
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166
• File 'x!rt 9et%r ;.$ 'ricssn 9A u!date @
*!ti"i+ Additinal Features
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168
• 50 retunes
– I$ *#errides (Lcal <n%ledge I$)• 'dit .ectr RF 4L *#errides @
– 9ext 5est 50 /annel• 3ie% Pi#t Ta&le 9et%r ;.$ 9ext 5est 50@
• Adding ne% sectrs and sites
– Add ne &y ne• Insert .ectrs @
– Add "ulti!le nes #ia single i"!rt• File I"!rt P/ysical *!ti"i @
• 9eig/&r Audit 4ata&ase Filtering• x-AFP 9eig/&r List Audit@
I$ *#errides
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16=
• se fr Lcal$aret
<n%ledge fInterference
• RF Ta& under'dit .ectr
• $axi"u" 3alueU 1
Insert .ite:.ectrs
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16D
• Insert ectors>
lic Add .ites t insert site le#el
data
9eig/&r List Audit (I)
• G=A#P 2eigh,or 1ist A!dit Tool
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16E
• G=A#P 2eigh,or 1ist A!dit Tool>
.et Filtering
*!tins
Filter 5ased nB
0andff unts
4istance
I$ Relatins/i!s
/annel Reuse
Add relatins/i!sB
'nfrce .y""etry
-.ites
All Pssi&le
9eig/&rs
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Retune Prcess – .u""ary:5ig Picture(I)
• Deelop a !ro"ect !lan
/$entify all tasks that nee$ to &e $one
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16G
/$entify all tasks that nee$ to &e $one
Ao%nt of tie ret%ne acti2ities will take in or$er to %n$erstan$ $ea$lines• Data Interit$ %ests
7ata&ase )ross :ali$ation Tests '/$entify correct list of #n-Air cells(• &SI' (udit
)heck for 3))"3S/) re%se $istance. Ret%ne 3S/)s with ;close< re%se '=>? iles(
/nterferer )4LL/7 atching with 3))"3S/) $e!en$s highly on 3S/) !lan• Mobile Measurement )ecordins and IM eneration
)ollect for 8 weeks 'ake s%re to incl%$e the 3 traffic(
Perfor /, 2ali$ation r%n a$$itional recor$ings %se ol$er /, $ata to fill issing /, $ata• *O stats
)ollect 7aily # atte!ts 8-@ weeks &efore ret%ne
4ns%re # $ata is co!lete '# $ata 2ali$ation(
4ns%re the $ata %se$ is %! to $ate. Plan !erforance is $egra$e$ with o%t of $ate $ata • %raffic Data
)ollect traffic $ata for the tie !erio$ as eas%re$ R*Q5AL 'for R*Q5AL !re$iction(
)ollect /S3 traffic for the last 8-@ weeks 'For Fre+%ency Planning(
Traffic for AFP B A2erage of @ Peak /S3 2al%es for each cell
• Measured )+,-(. )ecordins)ollect eas%re$ R*Q5AL recor$ings '!refera&le for 3 traffic &%siest $ays(
• Obtain %)- rowth• Neihbor/.ist Optimization
Neigh&or 7eletions
Neigh&or A$$itions
Retune Prcess – .u""ary:5ig Picture (II)
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18
• 'reate !ro"ects for (F!
#n-Air !ro0ect with c%rrent fre+%ency !lan '3AS4L/N4 )5RR4NT(
#n-Air !ro0ect to &e %se$ to o!tiiCe c%rrent !lan '3AS4L/N4 N4D(
F#R4)AST !ro0ect '#n-Air !lan E New sites( to !lan for new sectors1sites 'F#R4)AST(
• )un Optimizer0 obtain arious fre1uenc$ plan scenarios0 decide on the final plan
• )eiew plan
Generate re!orts an$ i$entify cells with !otential !ro&les ')hannel Re%se Re!ort(
Fee$&ack fro engineers 2is%al checks• 23port final plan for implementation• !ost retune actiities
,onitor P/s
)o!are 7esigne$ !lan 2s /!leente$ !lan
)o!are N&r-List %se$ in !lan 2s /!leente$ N&r-List
Retune Prcess – .u""ary:5ig Picture (III)
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181
*!ti"i+ 4is!lays and Re!rts
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182
•OptimiX most commonl& !sed displa&sand reports
50 reuse
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186
50 reuse (9u"erical dis!lay)
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188
/annel reuse (fr 50 and T0)
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18=
$AL c/annel reuse (fr T0 reuse)
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f 0* atte"!ts fr" ser#ing cell t n&r
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18
*!ti"i7a&le !ara"eters
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18G
I$ dis!lays
f f
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1=
• Pr&a&ility f Interference
–Pr&^ :I J Target :I _ – Assu"es t/at &t/ ser#er and interferer are /a#e a c-c/annel
50 (full !%er)
• =t/ !ercentile :I in d5
– =V f t/e ti"e t/e :I ges &el% t/e = t/ !ercentile :I
– T/in f it as t/e SL%est :I #icti" ex!eriences
– ser defined i?e? yu can use 2nd =t/ 1t/ etc? !ercentile
• Target :I and :I Percentile .ettings
– 'dit 9et%r .yste"
– .ee ;I n t/e next slide
Target :I and :I Percentile .ettings
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1=1
Pr&a&ility f Interference in V
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1=2
=t/ Percentile :I (d5)
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1=6
50 distri&utin
• +ie$ Pivot Ta,le 2et$or. 3M 0CC7 Distri,!tion
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1=8
.ite 4iagnstics
• 3ie% Pi#t Ta&le 9et%r ;.$ .ite 4iagnstic
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TR+ 4iagnstics
• 3ie% Pi#t Ta&le 9et%r ;.$ TR+ 4iagnstic
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1=E
5.I Re!rt
• 3ie% Pi#t Ta&le 9et%r ;.$ *-50-5.I and *-50-5 nflict Re!rts
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1=
*!ti"i7a&le Attri&utes
• 3ie% Pi#t Ta&le 9et%r ;.$ *!ti"i7a&le Attri&utes
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1=G
I$ statistics
• 3ie% Pi#t Ta&le RF Interference $atrix I$ .tatistics
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1D
I$ 9&r Analysis
• 3ie% Pi#t Ta&le RF Interference $atrix I$ 9eig/&r (;.$)
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1D1
. (Predicted #s $easured)
• 3ie% Pi#t Ta&le . R+AL Predicted #s $easured
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1D2
. (Predicted R+AL)
• 3ie% Pi#t Ta&le . R+AL Predicted
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1D6
Frequency Planning .trategies – Prs ns
• 434 )2-S2 5&''*0 %'* separate6
No nee$ to $o T) !lanning
Nee$ to $o ,A/# !lanning to a2oi$ ,A/# collisions &etween co-site$ sectors
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1D8
Nee$ to $o ,A/# !lanning to a2oi$ ,A/# collisions &etween co-site$ sectors
All cells ha2e sae R45S4 'cannot a2oi$ &a$ R45S4(• 437 )2-S2 5&''*0 %'* separate6
No nee$ to $o T) !lanning 'secAB,AL> sec3B,AL8 sec)B,AL(No nee$ to $o ,A/# !lanning. Ty!ically &etter !erforance than >x> R45S4
• Mi3ed &''*8%'* (d/*oc
/!ro2es R45S4 for the 3)) 'ore channels to !lan the 3))(
3etter switch /, recor$ings 'since co-3)) re%se is loose(
T) $egra$es since it has interference fro 3))
Re+%ires !lanning of T) layer. Nee$ to %se an AFP tool.
Nee$ to check for interference fro 3)) to T) T) to 3)) in a$$ition• (d/*oc %'* 5&''*0 %'* separate6
/!ro2es the re%se of T) since no nee$ to ha2e the constraint of too few ,ALs Allows assignent of low Pc &etween &a$ re%se an$ high Pc &etween goo$ re%se
4asier to anage than ,ixe$ 3))1T). Nee$s AFP tool for !lanning.• (d/*oc %'*0 434 )2-S2 within Site 5&''*0 %'* separate6
Sae as a&o2eH allows looser re%se &etween sites in networks with sall s!ectr%• Staered &''*
3)) is interlea2e$ in &etween T) channels. A2oi$s A$0-3))13)) re%se.
/n sall s!ectr% i!ro2es 3)) !erforance &%t intro$%ces A$0-3))1T) re%se• %'*8&''*8%'*
/ncreases fre+%ency $i2ersity since T) fre+%encies are s!ace$ farther a!art.
Lower !ro&a&ility of R*L4: fa$ing.
/ntro$%ces A$0-3))1T) interference.
50 Retune $et/dlgy <ey Pints
• *!ti"i7atin *&,ecti#es
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1D=
– 9 50:50 1st rder n&rs all%ed (0ard nstraint)
– $ini"i7e 50 . (V f erlangs %it/ 50 R+AL=-E) – A#id interferers %it/ Pr&^:IJ12 d5_ 1V (AFP setting)
– $ini"i7e 2nd rder n&rs t/at
• 0a#e /ig/ f 0* atte"!ts
• Are clse in distance
• 0a#e rientatins t/at s/t int eac/ t/er
• se "etric SV f 0* affected &y * 50:50 2nd rder 9&r
reuse *!ti"i7er
– 9 !enalty fr Ad, 50:50 n&rs (at :IU-6 d5 0* ccurs)
• .et t/e Ad, Re, Factr fr" 1 d5 t 1 d5
– Accunt fr Ad, 50:T0 since T0 !%ers d%n
– 5alance 50 . and f 0* affected &y 2nd rder n&r reuse
50 Retune $et/dlgy <ey Pints cnt[d
9& li t ti i ti & f 50 t
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1DD
• 9&r list !ti"i7atin &efre 50 retune
– 4elete a n&r if • f daily 0*s JU 1 A94
• Its 2-%ay n&r /as f daily 0*s JU 1 A94
• V f daily 0* relati#e t #icti" cell JU =V A94
• 9*T a -.ited n&r
– b1V t 8V f t/e n&rs culd &e deleted• se *!ti"i+ 9eig/&r List Audit Tl
– x-AFP 9eig/&r List Audit
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T0 Retune $et/dlgy <ey Pints
• Frequency 4i#ersity
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1D
Frequency 4i#ersity
– $in /an .e! U 6 c/annels:D 07 &et%een T0c/annels %/ene#er !ssi&le
– .!ectru" allcatinB T0-50-T0
• 0ard nstraints
– 9 T0:T0 n sectrs f sa"e site
– 9 Ad, 50:T0 n sectrs f sa"e site
– 9 Ad, 50:T0 n sa"e sectr
– 9 !enalty fr .a"e .ite Ad, T0:T0
T0 Retune $et/dlgy <ey Pints cnt[d
• 5lind s!ts
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5lind s!ts
– 9 &lind s!ts added fr" !redictins – Adding !redicted I$ decreases . !redictin
relia&ility
– Assu"!tinB If 50 exists and is acce!ta&le
t/en T0 can exist as %ell %it/ acce!ta&le!erfr"ance
– Fill in 5lind .!ts fr" lder I$ data