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00 Overview of POL Technologies Rev1

Feb 21, 2018

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    Programa de

    treinamentoAET

    CURSO: Overview of POL Technologies

    Mobwin Consultoria

    ASSOCIAO DOS ENGENHEIROS DE

    TELECOMUNICAES

    Fundada em 16 de Outubro de 1989

    Gesto 2011-2012

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    Benefcios da infraestruraeficiente

    Uma soluo de rede e!ciente de "onta a "onta"ermite a voc#:

    $inimi%ar os investimentos em infraestrutura&salas t'cnicas( energia est)ili%ada( arcondicionado de "reciso*** Etc+

    ,m"lementar novos servios ra"idamente* Redu%ir riscos e custos( otimi%ando e agili%ando

    sua rede* Am"liar o -ue voc# ./ "ossui( usando seus

    investimentos e0istentes em infraestrutura alongo "ra%o &!)ras o"ticas em ve% de ca)osmet/licos+

    Eliminar a rigide% das tecnologias "ro"riet/rias*

    Atender 1s mudanas nas necessidades de forma

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    Sistema de Cabeamento Estruturado

    Definio

    Por definio, trata-se de uma infraestrutura nica

    de cabeamentometlico ou ptico no proprietria,

    capaz de atender a diversas aplicaes

    proporcionando flexibilidade de layout, facilidadede erenciamento, administrao e manuteno!

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    Origem do CabeamentoEstruturado

    LA4

    P"#

    Telefonia

    Sistemas proprietrios

    $A,45RA$E

    Sistemas padronizados

    e certificados

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    Cabling

    STANDADs

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    !rgos Certificadores

    E,A 6 Electronics ,ndustries Association$ 7rgo americano res"ons/vel "or

    grande "arte das normas de

    ca)eamento estruturado em uso( a E,A' um 8rgo americano -ue(normalmente em associao com a T,A(determina caracter2sticas dos sistemas

    de ca)eamento estruturado* htt":99www*eia*org$ ,SO 6 ,nternational Standards

    Organi%ation

    htt":99 www*iso*ch

    http://www.eia.org/http://www.eia.org/
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    !rgos Certificadores

    T,A 6 Telecommunications ,ndustrAssociation$ 7rgo americano res"ons/vel "or grande

    "arte das normas de ca)eamentoestruturado em uso( a T,A ' um orgoamericano -ue( normalmente emassociao com a E,A( determina

    caracter2sticas dos sistemas deca)eamento estruturado* htt":99 www*tiaonline*org

    A;4T < Associao ;rasileira de 4ormas

    T'cnicas*$ = res ons/vel ela nova norma )rasileira

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    Normas de Cabeamento

    4ormas "ara a instalao em am)ientescomerciaisT,A @BC*,SSO >>B>4;R >?@@

    4ormas "ara instalao em am)ientes resid#nciasT,A @D;

    4ormas "ara instalao em ata CentersT,A F?G

    4ormas "ara instalao em am)ientes industriaisT,A >@

    4ormas "ara instalao em am)ientes de saHdeT,A >>DF*

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    Normas brasileiras deCabeamento

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    Normas brasileiras deCabeamento

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    Passive Optical Network overLAN

    O"er"iew of#O$Tec%nologies

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    A e"oluo do Cabeamento da $AN

    Redes LANponto a ponto

    Redes PON

    ponto a multiponto

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    A e"oluo do Cabeamento da $AN

    A evoluo do Cabeamento da LAN um desafo emuno das crescentes necessidades de novosservios implicando numa nova exigncia para arede Os novos servios demando altas taxas detransmisso tem orado a inraestrutura da LANmigrar de rede metlica para rede tica passiva!com alta capacidade de transporte de servios

    baseados em sot"are e virtuali#ados nos

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    O &roblema de falta de&adroni'ao do #O$

    A evoluo do Cabeamento da LAN para rede ticapassiva apresenta uma srie de desafos *uanto apadroni#ao em uno da alta +exibilidade e porenvolver uma grande *uantidade de solu,es

    tcnicas%$esta orma a Associao dos -ng% de .elecom/A-.0 se antecipa ao problema da alta depadroni#ao tanto nacional /A1N.0 como

    internacional /-2A(.2A 12C32 etc%%0! elaborando umcon unto de boas rticas e recomenda ,es ue

    ASSOCIAO DOS ENGENHEIROS DETELECOMUNICAES

    Fundada em 16 de Outubro de 1989

    Gesto 2011-2012

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    #ON (#assi"e

    O&tical Networ)*STANDADs

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    Operao de uma 'ON 6enrica$o"nstream 1roadcastAll data goes to all O4Ts( and the O4T

    address controls the downstream data*

    $o"nstream 1roadcastTodos os dados so enviados

    as O4Us( e elas !ltram osdados

    S"litter

    S"litter

    OL.

    OL.

    ON7

    ON7

    ON

    7

    ON7

    ON7

    ON7

    7ser87ser8

    7ser97ser9

    7ser

    :

    7ser

    :

    7ser:7ser:

    7ser97ser9

    7ser87ser8

    7pstream 5 Operao .$;AAs O4Us enviam informao "ara aOLT em um tem"o es"eci!co*

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    .ipos de aplio de 'ON

    Banda larga (&lanta e+terna*%iabit Passive &ptical 'et(or) *%P&'+

    . /tandard %!0123 4!5 %bit6s 7o(n, 8!45 %bit6s .p

    . /tandard %!0193 8: %bit6s 7o(n, 4!5 %bit6s .p

    .sa %P&' ;ncapsulation < ou convertepara ;t=ernet

    ede $ocal (&lanta interna*;t=ernet Passive &ptical 'et(or) *;P&'+

    ;;; 1:4!A

    a= standard for 8 %bit6s3 /ymmetrical 8!45 %bit6s

    av standard for 8: %bit6s3 /ymmetrical 8: %bit6s

    .sa Buadro de dados padro ;t=ernet *standard 1:4!A+

    &? se conecta aos s(itc=es Core da rede ?&C>?

    > P&' substitui as camadas de distribuio e acesso da ?>'

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    CentralOeadend

    &?

    4: )m

    &s sistemas P&' podem atender a clientes atD 4: )m do P&P da ;?C&

    *central &ffice+, sobre uma infraestrutura totalmente passiva! *so

    assimDtricos, conforme normas do .-+ p6 transporte de voz e 7< *;8+

    em /7E!

    ODN

    Rede optica passiva

    SEM eBuipamentos ativos na rede

    Banda larga na &lanta e+ternano , $AN , #ON (-#ON*

    3plitagem noarmrio do

    1airro!calada!poro doprdio

    i d

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    e.uerimentos &ara Banda $argadiferentes dos re.uerimento das $ANs

    A inraestrututura deLAN re*uer?

    $ais largura de )anda "ara os

    usu/rios

    As velhas redes de "ares met/licos!caram inade-uadas devido aoalcance limitado a F metros deraios das salas tecnicas

    4ecessidade de redu%ir o consumode energia e ar condicionado de"reciso

    Otimi%ar as redes e0istente

    minimi%ando o Ca"ital investido

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    /ibras o&ticas Tecnologia com&ro"adamigrando do ambiente outdoor &ara o

    ambiente indoor $ANs

    Tecnologia testada ea"rovada

    Primeira normadesenvolvida em >FF@

    $ais de >@ anos dea"erfeioamento datecnologia PO4

    J de G?*@ millh3es deO4Ts comerciali%adas emG>K

    rande )ase instalada

    no mundo &5TTM+

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    Similaridades em #ON (E#ON e -#ON*

    Ambas as redes apresentam amesma ar*uitetura com OL.! 3plittersou .A's 'assivos! cabeamento/3ingle;ode0 e ON7 / ou ON.0

    Ambas utili#am tecnologia @$;N

    B9%:a&=2.7 6%D $o"nstream8DBnm! 7pstream 8:8BnmN B9%:av=2.7 6%E $o"nstream

    89FB(89Bnm! 7pstream 8GEG(8GBnm

    O padro defne dierente perdas

    mas tipicamente se usa 9d1/considerando splitter 8xFD ec&egando a 9B)m de distHncia0

    Ambas as redes suportam Io# Iideoe $ados

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    Diferenas em #ON(E#ON em relao a -#ON*

    -'ON simtrica e comea e termina como-t&ernet% Amplamente utili#ados no segmentode enterprise! nas ;3O da Amrica do Norte enos 23' da Asia%

    3ervios de dados em 2' utili#ando interacespadroni#adas 3egundo normas -t&ernet B9%:e gerenciamento via 3N;'

    3uporta vo# sobre 2' /Io2'! N6N! 2;3 [email protected]! nas portas K3 /no tem saidas 3$>

    2'.I = CK.I 5 3uporta ;ulticast! usandomenos largura de banda

    .axas de transmisso -'ON so simtricas /ullduplesx0 de acordo com as normas 2--- ou

    se4a! 86bs! 8B6bs! DB6iga e 8BB6iga noKuturo0

    Ampla adoo de -t&ernet! redu#indo custos einvestimentos

    2nteroperabilidade via $'o- $OC323 Apenas-'ON supporta JK over 6lass /JKo60 'adro

    Cable Labs

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    6'ON baseado no padro 2.7 tem com oco asempresas de telecomunica,es /.-LCOs0 noprovimento de servios de banda larga em plantasesternas%

    'rov A.; para .$; e para vo# nas portas K3possibilitando a entrega de traego em portas 3$>/3.;(80

    'ara dados utili#a portas -t&ernet /JMDG0 e 6%EB:nas ON.s% Nas OL.s usa portas 3.;(8 para o

    transporte de -8s e I%:G /.$;0 de roteadoreslegados

    -ncapsulamento proprietrio para os servios devo# /6-;0

    .axa assimetricas do 6'ON semple multiplas de F99;bps padr,es 2.7(. /para compatibili#ar com3$>=3ON-.0?

    .axas 6'ON? /OC9D 8%9DD ;bps0 /OCD 9%D;bps0

    .axas 6'ON8? OCD /9%D ;bps0 x /OC89 8B6bps0

    -*uipamentos com base em normas 2.7=3ON-.

    tipicamente mais complexos

    em geral GB maiscaros

    Diferenas entre as tecnologias-#ON (banda larga* em relao a E#ON ($AN*

    # # i O i l $AN

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    #or.ue #assi"e O&tical $ANs(#O$*0

    POLPO4s em LA4s &Enter"rise+$ Longa historia em a"lica3es 5TTM

    SeguranaN Soluo )aseada totalmente em 5ON Administrao Centrali%ada

    Converge vo%( v2deo( dados eautomao do edif2cio em umaHnica !)ra

    Sem dis"ositivos eletronicos entre oata Centrer9$5 at' a mesaN Elimina switches de distri)uio e acesso &menor CAPEI e OPEI+N Com"artilha largura de )anda "or meio de TAPs e s"litters redu%

    signi!cativamente o nHmero de ca)os o"ticosN 4o necessita de energia( UPS ou re!rgerao no distri)uidor de "iso*

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    1m&acto do #O$ nos &adr2es de Enter&rise

    -'ON ( 2--- B9%:a& /86b=s0 e B9%:av /8B6b=s0$ 3o os novos padroes de 'ON indoor para -nterprise

    .anto como o cabeamento estruturado deve estar emconormidade com as normas para proteger os

    investimentos

    AN32=.2A(GF(C%B e 5C%9 4 re*uerem splitters pre(conectori#ados e o minimo de 9 fbras por rea de trabal&o%

    O splitter ou .A' deve ser pre(conectori#ado e no ser parte do

    cabeamento &ori#ontal

    AN32=.2A(GF(C B8 distribuidor de piso por andar! B8 adicional caso necessario to support

    additional application suc& as intelligent building sstem /lig&ting! >IACcontrol! securit sstem! etc0%

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    1T3 -#ONS&ecifications

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    ;;5

    TRGEPO4

    TR>@

    TR>DTR>?G PO4

    O4T$anagement

    TGDDTGDBTGBD

    ,TUE9PO4 PO4 > E9PO4

    >PO4

    4 PO4

    < *FBD 4PO4>

    < 4 PO4G

    #ON STANDADs

    ,EEE

    BG*KahstartedG? >@

    *

    >

    G

    >

    ?

    >FFB G?

    A9;PO4

    EPO4

    PO4

    >EPO

    4

    IPO4>

    G> 9B8

    EP

    5uture

    Coherent9O5$

    T$

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    N-#ON5 6 C%oices for

    Tec%nolog4 Migration

    earG G>

    G>@

    4PO4G?SAggregated

    ca"a)ilit "erfeeder

    O4U Su)staina)le

    IPO4>

    &US G*@VS>+

    PO4

    5$ PO4O5$ PO4$ PO4

    $

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    Tend7ncias a longo #ra'o1T3 assimetrico 89- 3# + :99- Down1EEE simetrico :99- 3# + :99- Down

    1T3;/SAN

    89 + :99 -igaassim,trico

    1EEE:99 -igasim,trico

    /uturo do /TTlloc Ka

    P?&>lloc Ka

    7"Fu 8

    >lloc Ka

    Payload 8

    >lloc Ka

    P?&>lloc Kb

    7"Fu 8

    >lloc Kb

    Payload 8

    >lloc Kb

    %uardime

    //tart

    Downstream

    3&stream

    onte? Kiber>ome

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    Transmisso dos /rames

    Konte? Kuru)a"

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    MENSA-ENS DE CONTO$E

    Konte? Kuru)a"

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    #O>1S1ONAMENTO DE SE>1?OS

    Konte? Kuru)a"

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    Alocao de Banda

    Konte? Kuru)a"

    -#ON #roblema &; migrar &;

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    -#ON (-1-A e :9-iga assim,tricos* no coe+istem na mesma rede&assi"a (ODN*@ e+igindo %ardware adicional (DM* ou criao de

    no"a ODN@ o .ue no acontece com E#ON (-1-A e :9-igasim,tricos

    -#ON #roblema &; migrar &;:9-iga

    Konte? Kuru)a"a

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    TDM

    Net+o!

    DataNet+o!

    PSTN

    ,ideoNet+o!

    Net+o!

    M%"t

    Optica#)i$e

    Te!"i$a#

    Ce$t!a# Oice

    EPON & GPON. ide$tica# se!vice-#a/e! !e0i!e"e$ts o! TDM

    Te#co-%!ade 3oS is !e0i!ed 4itte! +a$de! de#a/ St!at"-t!acea6i#it/

    Mst 6e co"pati6#e +it7 t!ip#e-p#a/ $et+o!s

    Ce## Site

    T$ Services over 0PO4

    ONT

    Apa!t"e$t 8i#di$%

    C7a$$e# 8a$ Et7e!$et S+itc7E1 G6E

    Coppe!

    8si$ess

    E1

    G6E

    ONT

    ONT

    $ E1

    ONT ONT

    ONT

    onte? Kiber>ome

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    1EEE -E#ONand :9-E#ON

    P i f > t > EPO4

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    Progression from > to > EPO4

    onte? Kiber>ome

    8B6 -'ON 5 2---B9%:av 5 9BBF 5 $uas

    Opoes?

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    EPO4 < ,EEE > )9s )idirectional lins >?F nm downstream >K> nm u"stream >@@ nm reserved for e0tensions BG*Kah:> s"lit ratio U" to >:? commerciall availa)le

    BG*Kav >EPO4$ $inimum >:> s"lit ratio

    U" to >:? commerciall availa)le

    BG*K similarities$ Standard inter frame ga" &,P+$ Uses same $AC

    $ulti

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    Sco"e of the ,EEE BG*K Standard

    IEEE >ome

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    EPO4 $anagement

    Lin laer management$ OLT remotel manages attached O4Us$ Remote lin monitoring

    OA$$ Esta)lished after discover "rocess$ $aintained ) "eriodic messages

    $ Remote failures conveed in [ags ofOA$ msgs*

    OA$ using S4$P@G

    -'ON in @orld

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    4apa$. ?ome

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    4J

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    4)"s "er channel in u"stream$ G m reach with ? wa s"litV u" to ?m$ O"tical lin )udgets from GFd; to K@d;$T$ and Point

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    ,TU and ,EEE ne0t generation standards

    4 EPO4

    N6('ON9 8B6 -'ON

    ;andwidth ? to B I >9G*@( >9> >9>( >9>

    Primar Advantage Su""ort of multi"lewavelengths and new $for Pt not cost eZective forS5U a""lications todaV >9> isfor S5U

    Commercialavaila)ilit

    G>J Toda

    G*@ PO4 Card

    > PO4O4U

    4K>Cnm

    u"

    >@G?@??nmu"

    G*@ PO4O4T

    >?F nm down>K>

    Cnmu"

    >GDCor>K>Cnmu"

    >@DD nm down

    >EPO4O4U>9> EPO4

    OLT

    > EPO4O4U

    >?F nm down

    >@FK nm down

    >>G@nm for Pt

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    PO4 avelengths49> EPO4$ G*@ PO4 and >9> EPO4

    84N: 841: 840: 8AA: 821: 85::

    8542 8522 8555 8595 -8518 850N 8N:A 8N45 8N5:

    #%-P&'68:-8: ;P&' %P&'68:-8 ;P&' %P&'6;P&'

    '%-P&'4 FH #%-P&'68:%;P&' I7< Point to Point &7F

    >>

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    'OL ( 'assive

    Optical LANs

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    50

    IEEE x ITU-T !I AN

    PO) - Passive Optica# )ANs 7o +i## dei$e t7e

    Et7e!$et PON sta$da!ds a$d ATM TDM PONs7/ !ep#ace e$te!p!ise '()'0(#ps)AN si$% PON

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    Passive O"tical 4etwor Overview

    POL is an Enter"rise "assive o"tical networ)ased on legac PO4 architecture$ ,TUEPO4 &Ethernet )ased+ Enter"rise a""lications )egan around GF

    $ ]endors with new software features( newhardware for indoor a""lications

    Point to multi

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    PO4 5TT0Architecture

    1 t t f t% T%i (1 T*

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    1nternet of t%e T%ings (1oT*

    or Et%ernet of t%e t%ings0

    /(itc=

    /(itc=

    /(itc=

    /(itc=

    /(itc=

    /(itc=

    /(itc=

    /(itc=

    $ata

    Center8

    /(itc=

    /(itc=

    /(itc=

    /(itc=

    $ata

    Center9

    A4

    Router

    A4

    Router

    3'1m Net"or)

    -t&ernet o t&e t&ingsB:%8* /3&ort 'at& 1ridiging ;ac in ;ac0

    -t&ernet 3tandards para 'OL

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    -t&ernet 3tandards para 'OL2---LAN

    2---'ON

    BG*K av &>EPO4+G

    BG*K ah &EPO4+ G?

    BG*K 00 &?EPO4+G>@BG*K &>EPO4+G>D

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    hat is POL\

    7es)top &'

    Service Provider

    ;P&' &?

    7es)top &'

    /plitter6interconnect

    /plitter6interconnect 7ata

    Oideo

    Ooice

    8ASEMENT

    1st F)OOR

    2$d F)OOR

    E$te!p!ise Oice 8i#di$%

    nterconnect to riser

    Passive O"tical LA4*Aa X]ertical PO4Y(XO"tical LA4Y

    Uses 5TT0 PO4com"onents in anindoor environment Again( o"tical !)er&single mode+ isde"loed almost all

    the wa to the enduser

    Point

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    Passive O"tical 4etwor Overview

    POL is an Enter"rise "assive o"tical networ)ased on legac PO4 architecture$ ,TUEPO4

    Enter"rise a""lications )egan around GF$ ]endors with new software features( new hardware

    for indoor a""lications Point to multi

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    Copper(based LAN Active Ethernet switches for LA4 core(

    aggregation and access functions Ca)le infrastructure "er service

    o CAT0o

    Coa0o Some $ulti

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    ;ene!ts of Singlemode 5i)er for the LA4

    Superior Performance$ reater )andwidth and distance*$ 4o cross

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    @&ic& 3tandards3upport 2t P

    ,ndustr Su""ort

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    ,ndustr Su""ort

    APOLA4 lo)al industr association formed&www*APOLA4glo)al*org+$ Association for Passive O"tical LA4 industr organi%ation$ $em)er com"anies consisting of

    istri)utors

    Active and "assive e-ui"ment manufacturers ,T integrators Consultants( and other a^liations

    $ Advocates the education and glo)al ado"tion of "assiveo"tical networs for the LA4 maret"lace

    F

    ;,CS, Su""ort

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    ;,CS, Su""ort

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    .A'TAP >P

    &'

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    .A'

    TAP >P

    K..> 'ON [9861'3

    /redundHncia

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    esili7ncia com 5 O$Ts com5 i % ti di ti t

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    PON 1INATI,A

    POL Smmetric

    OLTs EPO4

    TAP >P

    O)T GEPON

    PON L11G6ps

    &'

    %pps

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    .A'TAP >P

    &'

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    25 M6ps

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    .A'TAP >P

    K..> 'ON [9861'3

    /redundHncia

    POLSmmetricOLTs EPO4

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    5 camin%os &ticos distintos

    Dista$cia "a 2< BM

    > TAPNIBINS

    ONTs p PON

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    8 6bps 3metric6-'ON7sing .A's

    $AN F #O$ e.ui"alence :-b&sS4metric 3&lin) bandwidt%

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    TA#s AE MOE /$E=1B$E

    .A'

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    ??? M6ps

    S4metric 3&lin) bandwidt%

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    ?< ONTs pe! PON

    .A'125 M6ps

    > ONTs pe! PON

    .A'

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    25 M6ps

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    1 ONTs pe! PON

    .A'

    .A'

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    1 M6ps

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    2 ONTs pe! PON

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    8B6bps 3metric6-'ON

    7sing .A's

    $AN F #O$ e.ui"alence :9-b&sS4metric 3&lin) bandwidt%

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    TA#s AE MOE /$E=1B$E

    S4metric 3&lin) bandwidt%

    .A'.A'.A'.A'

    ??? M6ps

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    ?< ONTs pe!PON.A'

    125 G6ps> ONTs pe! PON .A'.A'

    25 M6ps

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    1 ONTs pe!PON .A'.A'.A'

    1 M6ps

    1 M6ps

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    2 ONTs pe!PON

    Ate$tio$.UTP po!t #i"itedUp to 1

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    TA#s AE MOE /$E=1B$E

    .A'

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    .A'

    .A'

    .A'

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    .A'

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    15 M6ps

    15 M6ps

    15 M6ps

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    15 M6ps

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    ONTs pe! PON

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    25< M6ps

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    < ONTs pe! PON

    .A'

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    > ONTs pe! PON

    .A'

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    1> M6ps

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    5 ONTs pe! PON

    .A'

    .A'

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    S4metric 3&lin) bandwidt%

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    edundHncia com duas O$Ts

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    Ee"p#o de !ed$d$cia i"p#e"e$tada co" das

    O)Ts e s #itte! 2.1 $a #ti"a "i#7a e" FTT;

    O)T 2

    O)T 1

    Gi%a 1

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    edundHncia (du&laabordagem* na Iltima mil%a

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    abordagem* na Iltima mil%a

    com uma Inica #ON

    ;xemplo de redundncia implementada por uma c=ave

    tica da >/%> na ultima mil=a em HHE

    edundanc4 3sing 5+N S&litterwit% Di"erse /iber outing

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    wit% Di"erse /iber outing

    11sp#itte!s

    O)T P!otectio$

    Use p!otected"ode o! O)Ts

    P!otects o! O)T7a!d+a!e a#ts

    Dive!se !ote P!otects o! OSP

    a#tsedundancia

    O$T #rotection J5 ODNs

    edundanc4 3sing 5+N S&litterwit% Di"erse /iber outing as

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    gde&lo4ed at Cit4 of Morganton

    11

    sp#itte!s

    O)T P!otectio$

    Use p!otected"ode o! O)Ts

    P!otects o! O)T7a!d+a!e a#ts

    Dive!se !ote

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    21 sp#itte!s

    !ed$d$cia de #ONsna Iltima mil%a

    O$T #rotection J9sp#itte! 2.1:

    edundanc4 3sing TA#s

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    O)T P!otectio$

    Use p!otected"ode o! O)Ts

    P!otects o! O)T7a!d+a!e a#ts

    Dive!se !ote

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    .A'??? M6ps

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    edundanc4 3sing O$Ts J TA#s

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    O)T P!otectio$

    Use p!otected "ode o! O)Ts

    P!otects o! O)T 7a!d+a!e a#ts

    Dive!se !ote

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    Next 6eneration'ON 3tandards

    Next 6eneration 'ON 3tandards

    ."o separate standards ( cooperation limited

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    ."o separate standards cooperation limited/"avelengt&s0

    2.7 3tandard 1and"idt&s 3tatus

    G*@ PO4 &*FB?+ G*@ own( >*GU"T$( AT$asmmetric

    $ost widelde"loed for carriers

    w9 SM trans"ort

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    own

    $ost widel de"loedstandard for LA4s

    and small ,SPs

    > EPO4 &BG*Kav+ > own( > U" &>9> not usefull+

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    small ,SPs

    $ec 9B8D 8st >al 9B8G 9B8F

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    models o traditional LAN

    A4

    Users connectedat >9>)"s each

    LA4Power( Cooling(;atter ;acu"

    CAT)"s whit >)"s full du"le0

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    LAJ6- LANsLarge num)er of users Users connected at >9> )"s whit >)"s full du"le0

    &smmetric+ UPL,4s

    !PON architecture "ased inAT#$ is not co%pliant to &'''standards and doesn(t providethe necessary "andwidth toreplace the )* !"ps traditionaluplinks

    ? rc ec ure s comp an o2--- K7LL($7'L- smmetric LANs /B9%:a&6-'ON = B9%:av 8B6-'ON0

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    !PON+ Architecture will "e sy%%etric only

    'assive Optical LAN using onl

    PassiveS"litter

    Passive O"ticalLA4s

    O4T ? Port)"s

    $onomode 5i)er ?

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    models o traditional LAN

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    Users connectedat >9>)"s each

    LA4Power( Cooling(;atter ;acu"

    CAT- LAN JO7.-Jand support 2o. "it&

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    861'ssmmetric

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    @& replace regular enterpriseLAN using 'OL Y Ne" '11

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    'OL 'assive Optical LANs ma)es -t&ernet c&eaper 6-'ON/B9%:a&0 or small LANs and 8B6-'ON /B9%:av0 or largerLANs provides smmetric uplin)s to a core 3'1virtuali#ation bac)bone%

    'ON sstems can meet customers up to 9B )m on a totallpassive inrastructure"it&out active devices on t&e net"or)%

    7sing 'OL signifcant reduction in operating costseliminating tec&nical rooms! a lot o rac)s! to accommodateaccess s"itc&es and patc& pannels mirroring! stabili#edpo"er solution! precision air solution! and a lot o coopercables% optimi#e existing net"or)s minimi#ing investedcapital (CA'-

    Jeducing energ consumption and reduce operating costs

    LAN using 'OL Y Ne" '11-t&ernet Krames /B9%8a&0 Q 3'1mac(in(ac /B9%8a*0 Q 8B6-'ON

    /B9%:av0P

    2.7(. X9

    ;igrao de 6'ON para 8B6 'ON

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    2.7 . X9/6('ON90

    6%E%8 6%E%9 6%E%: 6% 6%E%D

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    Uni-ueness$ >EG 6 >K nm and >G 6 >GBnm )and used

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    >GD

    6%%9 ( ';$6%%8 ( service

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    4ew concerns 9 5eatures Securit model and Pro"osal Time Snc

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    DM#ON

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    Each O4U is served ) one or more dedicated wavelengths*

    A num)er of OLT T09R0 com"onents ma" PO4 client signalsonto se"arate wavelengths( which are multi"le0ed onto ashared( )idirectional !)er

    Two inds of $ PO4Point to "oint $ PO4h)rid $ PO4 : a wavelength &es"eciall u"stream+ ma )e shared ) two or more O4Us

    A wavelength control )loc & control+ ma )e "resent tocontrol the transmitted and received wavelengths and theres"ectivel connected O4Us*

    DM#ON Arc%itecture

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    AdvantageMigh )andwidth4o ;A algorithm re-uirement

    isadvantageE0"ensive and ver high "ower consum"tionavelength allocation

    Be/ Tec7$o#o%/

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    unnable transmitter

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    Orthogonal5re-uencivision$ulti"le0ed&O5$+

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    5ort giga)it time division multi"le0ed PO4&IL

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    ;igrao de 6'ON para 8B6 'ON'ricipais difculdades de convivencia

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    OL.

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    O uturo de DB6('ON .@$;

    O .$;(@$; 'ON &\brido! mas as solu,es baseadas em @$;('ON no so? isto avorece o DB6('ON em

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    3uportam a coexistncia de todas as trs gera,es da mesma rede 'ON /O$N0 desta orma a evoluo de

    6'ON! 6('ON e DB6('ON .@$; ( deve ser mantido o maior tempo poss\vel devido a O$N

    -voluo do 6'ON e 6('ON9 /9B8G0?

    6'ON6('ON('ON(DB6 .@$; /P0

    DB6('ON .@$; simetricos /Dx 6('ON simtrica0 suscept\vel de ser padroni#ada aps 9B8G

    -m evereiro=9B8G! no Counsil K..> na 3ucia apresentou um prottipo B6('ON .@$; sob nome ;AJR 9'rovaveis 3plitagens mximas 8?G89]9B)m 8?89]DB)m 8?:9]FB)m

    A incompatibilidade de 6'ON e 6('ON9! na mesmo O$N! deve apoiar a

    (onte? >ua"ei

    /uture Studies

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    Sstem architecture( s"eci!cations ofI@ and ?ED+

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    2--- standards

    or -.>-JN-.used in

    virtuali#ationprocess

    @& '11 -t&ernet Krames/B9%8a&0 Q 3'1 mac(in(ac

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    3&ort 'at& 1ridging provides LAN virtuali#ation and ma)es-t&ernet simpler?'11 -t&ernet Krames /B9%8a&0 using 3&ort 'at& 1ridgingmac(in(mac /B9%8a*0 protocol eliminates optical3"itc&Jouters /and ;'L3 protocol at core and distribution

    laer% '11 -t&ernet Krames /B9%8a&0 Q 3'1 mac(in(ac/B9%8a*0 provides?

    robust Jesilience /GB milliseconds o net"or)recover0

    3implicit 'lug Y 'la protocol or ne" net"or)

    services! reducing deploment time! does not re*uire 2'address confguration! creating routes! interacesettings %%% etcW

    3calabilit 3'1 transport inrastructure services /2(32$0! t&e connectivit inrastructure t&roug& 9 ;AC

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    /B9%8a*0 provides LAN

    virtuali#ation /3$N and 3KI P

    Large Laer 9 $omains 3ince t&e mid 8Bs /2--- standardi#ed B9%8X in80 ILAN tagging is t&e predominant "a o virtuali#ing enterprise

    Net"or) Iirtuali#ation /3$N Y3KI0

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    80 ILAN tagging is t&e predominant "a o virtuali#ing enterprisenet"or)s% @it& 2' being t&e transport protocol! a one(to(one mappingbet"een ILAN and 2' subnet &as been establis&ed as t&e deacto standard

    design% 2n some cases exceptions exist "&ere business re*uirements ormigrations re*uire eatures suc& as 2' multi(netting! "&ere multiple 2'subnets exist on a single ILAN%

    8% ;ost applications &ave used t&e ILAN concept onl to segment into 2'subnets to reduce t&e broadcast domains! improve perormance! and easetroubles&ooting% 3ome net"or) applications are loo)ing or truesegmentation to restrict access bet"een communication domains% 2n smalltopologies! ILANs can ulfll t&is segmentation re*uirement nicel! but inlarger domains! true segmentation is ac&ieved b virtuali#ing t&e Laer :domain as "ell%

    9% Laer : device virtuali#ation is ac&ieved b using multiple routing

    instances )no"n as Iirtual Joute Kor"arder /IJK0 tec&nolog% @it& t&istec&nolog! ILANs are mapped to di^erent IJK instances "&ic& in turncreate tra

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    I$vest"e$t #o+e! CAPEJ a$d OPEJ Redctio$ A%i#it/ a$d ve!sati#it/ i$ i$sta##atio$

    ;i%7 6a$d+idt7 9p!oo o t7e t!e: )o+ atte$atio$ a$d !esista$ce to i$te!e!i$% Mi$o! si%$s o de%!adatio$ a$d G!eate! sec!it/ )o+e! po+e! co$s"ptio$ a$d space Mi$o! Ne+ Et7e!$et sta$da!d 9IOT I$te!$et o T7i$%s: Sppo!ts $e+ tec7$o#o%ies DAS - ?G G G-)TE RF Ove! G#ass iFi +it7ot s7oc paca%es IPT -Te#eo$ia IP IPT, - M#ti Cast

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    3&ort 'at& 1ridging ;ultiservice net"or)s"it&out multiple protocols .&is tec&nologtransorms t&e net"or) %%%

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    BG*>

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    &uter-;t=

    Q R "

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    >nDl Hibramonomo

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