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Deployment analysis of TDM/WDM single fiber PON with colourless ONU operating at 2.5 Gbps subcarrier multiplexed downstream and 1.25 gbps upstream

Fàbrega Sánchez, Josep Maria,El Mardini, Ahmad,Polo Querol, Víctor,Lázaro Villa, José Antonio,López Pastor, Eduardo Tommy,Soila, Risto,Prat Gomà, Josep Joan

Abstract

A single-fiber full-duplex hybrid TDM/WDM-PON is demonstrated to operate at 2.5/1.25 Gbps rates, with RSOA ONU. It achieves high power budget (GPON compliant) at a distances higher than 20km, and serves up to 1280 users.

Full text

Deploymen analysis o TDM/WDM Single Fibe PON wi h Colou less ONU Ope a ing a 2.5 Gbps Subca ie Mul iplexed Downs eam and 1.25 Gbps Ups eam Josep M. Fab ega 1 , membe OSA, Ahmad El Ma dini 2 , Vic o Polo 1 , José A. Láza o 1 , membe OSA, Edua do T. Lopez 1 , Ris o Soila 2 , and Josep P a 1 , membe OSA (1) Uni e si a Poli ècnica de Ca alunya (UPC), Dep . Signal Theo y and Communica ions, Jo di Gi ona 1, D4-D5, 08034 Ba celona (Spain). E-mail: jm ab ega@ sc.upc.edu (2) Tellabs Inc., 18581 Dallas Pa kway. Dallas, TX 75287 U.S.A E-mail: ahmad.elma dini@ ellabs.com Abs ac : A single- ibe ull-duplex hyb id TDM/WDM-PON is demons a ed o ope a e a 2.5/1.25 Gbps a es, wi h RSOA ONU. I achie es high powe budge (GPON complian ) a a dis ances highe han 20km, and se es up o 1280 use s. OCIS codes: (060.4510) Op ical communica ions, (060.4250) Op ical ne wo ks. 1. In oduc ion Access Passi e Op ical Ne wo ks (PONs) ha e eme ged as e ec i e pla o ms o deploy bandwid h demanding ad anced se ices. Thus, nex gene a ion PONs ha e o sol e se e al challenges, including high bi a e deli e ing and Wa eleng h Di ision Mul iplexing (WDM). A manda o y speci ica ion is he use o a single ibe o bo h, ups eam and downs eam ansmission, o educe he size o he ex e nal plan and he complexi y o he Op ical Ne wo k Uni (ONU). Ano he in e es ing ea u e is he use o he same wa eleng h o ups eam and downs eam senses, un es ic ing he wa eleng h’s use, and leading o he use o e lec i e colou less ONUs. In he pas , some ad anced designs which a oid he gene a ion o ligh a he ONU by using di e en modula ion schemes o downlink and uplink ansmission ha e been demons a ed [1-2]. Howe e , hese me hods may no be low-cos , due o he componen s needed o modula ion and de ec ion o he up/downs eam signals. A mo e cos -e ec i e solu ion can be he use o a subca ie mul iplex (SCM) echnique [3-4]. Using his echnique ups eam and downs eam spec ums a e no o e lapped, and he sys em becomes mo e ole an in on o Rayleigh backsca e ing. In his pape , o he i s ime, we demons a e a 20 km ull duplex PON ope a ing a a a e o 2.5 Gbps downs eam and 1.25 Gbps ups eam using he SCM echnique, gi ing se ice o a maximum o 1280 use s. Aiming o each he use wi h single ibe -scheme, he ole ance agains Rayleigh backsca e ing a ios is also e alua ed. 2. Expe imen s and discussion The Op ical Line Te minal (OLT) and ONU schemes o es a e depic ed in Fig. 1. Fo he 2.5 Gbps downs eam signal we used a Mach-Zehnde Modula o (MZM) p eceded by a lase (ope a ing a 1550.12 nm), and ollowed by an EDFA. Please no ha all he cos o he OLT is sha ed among all he use s, hus gi ing o he ope a o he eedom o use se e al expensi e echniques a he OLT side. A Pseudo-Random Bi Sequence (PRBS) wi h leng h o 2 31 -1 was used as downs eam signal. Once di e en ially p ecoded inside he downs eam Pulse Pa e n Gene a o (PPG1), i was mixed wi h a 5 GHz elec ical oscilla o (no synch onized wi h he PPG1 clock), and he esul ing signal was d i en o he MZM. A he elec ical side o he ONU ecei e , a e he 70/30 op ical couple and he APD, a delay-and-mul iply scheme was implemen ed using s anda d elec ical mixe s. This 70/30 op ical coupling a io was ound op imum in o de o equilib a e ups eam and downs eam powe budge s, since he RSOA gain was ound o be o 20 dB and he back- o-back sensi i i y o he p oposed SCM ecei e was o -28.2 dBm (using no op ical couple ). Fo he 1.25 Gbps ups eam signal, we used ano he 2 31 -1 PRBS om a second pulse pa e n gene a o (PPG2), d i ing an RSOA in he ONU. Based on hose ONU/OLT designs, h ee di e en PON scena ios we e es ed, ying o keep a minimum sys em ma gin o 3 dB: i s a pu e TDM ne wo k wi h low co e age (8 use s) used as a e e ence; secondly an s anda d medium hyb id TDM/WDM PON co e ing 160 use s; and inally an op imized ne wo k capable o se e 1280 use s. The i s scena io was assembled as a 25 km eede spool, ollowed by a 1:8 powe spli e and a 2.2 km d op spool; in a single- ibe con igu a ion. This is shown in Fig. 2. I was in ended as an access ne wo k o a la ge a1144_1.pd OSA / OFC/NFOEC 2010 NWB5.pd co e age a ea and low densi y o use s, capable o se e up o 8 use s. Thus, a pu e TDM con igu a ion was es ed and sa ed as a e e ence. El. Osc. MZM Tx LASER DATA Down APD DATA Up LPF APD τ 6 dB spli e DATA Down RSOA DATA Up BER1 PPG1 PPG2 LPF BER2 OLT ONU BPF PON PON 70:30 Couple -60 -55 -50 -45 -40 -35 -30 0 1000 2000 3000 4000 5000 6000 7000 F equency (MHz) Powe (dBm) (a) -65 -60 -55 -50 -45 -40 -35 0 1000 2000 3000 4000 5000 6000 7000 F equency (MHz) Powe (dBm) (b) -80 -70 -60 -50 -40 -30 -20 -10 0 1000 2000 3000 4000 5000 6000 7000 Powe (dBm) F equency (MHz) (d) -80 -70 -60 -50 -40 -30 -20 -10 0 1000 2000 3000 4000 5000 6000 7000 F equency (MHz) Powe (dBm) (c) Fig. 1. Le : ONU and OLT schema ic. Righ : Elec ical powe spec ums a he ecei e side: (a) be o e il e ing a he ONU, (b) a e il e ing a he ONU; (c) be o e il e ing a he OLT, and (d) a e il e ing a he OLT. 25 km 2.2 km ONU OLT 1:8 Powe spli e 16 km OLT 1:4 Powe spli e 1x40 AWG 2.4 km ONU 2.2 km Fig. 2. Schema ics o scena io 1 (le ) and scena io 2 ( igh ). In his i s case, o al ne wo k losses we e measu ed o be 16 dB. The ONU inpu powe was o -16 dBm, and i s ou pu powe was measu ed o be o +1 dBm, meaning ha he ONU ne gain was o 17 dB and he RSOA gain was o 20.5 dB. 0 dBm we e injec ed om he OLT o he eede ibe , gene a ing a measu ed Rayleigh Backsca e ing (RB) o -33.5 dBm (ha ing a 17.5 dB o ups eam op ical Signal o Rayleigh-backsca e ing Ra io, oSRR). Unde hese condi ions, ups eam and downs eam ansmission cu es we e measu ed. Resul s a e shown in Fig. 3. Fo he downs eam we ound a sensi i i y o -20.1 dBm, while o he ups eam he sensi i i y ound was o -18.4 dBm, bo h o a BER o 10 -10 . This means ha we achie ed a downs eam powe budge o 20.1 dB (sys em ma gin o 4.1 dB) and an ups eam powe budge o 19.4 dB (sys em ma gin o 3.4 dB). -12 -10 -8 -6 -4 -35 -30 -25 -20 -15 Inpu Powe a ONU (dBm) log(BER) Scena io 1 Scena io 2 Scena io 3 -12 -10 -8 -6 -4 -35 -30 -25 -20 -15 Inpu Powe a OLT (dBm) log(BER) Scena io 3 Scena io 2 Scena io 1 Fig. 3. Downs eam sensi i i y cu es o he h ee di e en scena ios (le ), Ups eam sensi i i y cu es o he h ee scena ios ( igh ) The second es -bed was composed o a 16 km eede spool, ollowed by a 1:40 AWG demul iplexe . Nex o i , a 2.4 km dis ibu ion spool was p eceding a 1:4 powe spli e and a 2.2 km d op spool. This is shown in Fig. 2 ( igh ). This scena io was o an a ea wi h medium densi y o use s, capable o se e up o 160 use s. To al ne wo k losses we e measu ed o be 16.4 dB. The ONU inpu powe was -16.4 dBm, and i s ou pu powe was measu ed o be o +0.8 dBm, meaning ha he RSOA gain was o 20.7 dB. Also, 0 dBm we e injec ed om he OLT o he eede ibe , gene a ing a RB o -33.5 dBm; and ha ing a 17.5 dB o ups eam oSRR, oo. Again, ups eam and downs eam ansmission cu es we e measu ed. Resul s a e shown in Fig. 3. Fo he downs eam we ound a sensi i i y o -20.6 dBm, while o he ups eam he sensi i i y ound was o -19 dBm, bo h o a BER o 10 -10 . This means ha we achie ed a downs eam powe budge o 20.6 dB (sys em ma gin o 4.2 dB) and an a1144_1.pd OSA / OFC/NFOEC 2010 NWB5.pd ups eam powe budge o 19.8 dB (sys em ma gin o 3.4 dB). Finally, an upg aded hi d es -bed was assembled. In his case, a double ibe eede is p oposed, so he RB amoun gene a ed was e y low; only due o de dis ibu ion and d op s ages. Now a couple o 16 km eede spools we e implemen ing a double ibe pa h om he OLT o he AWG. Nex o i , a 2.4 km dis ibu ion spool was p eceding he 1:32 powe spli e and a 2.2 km d op spool. This is shown in Fig. 6. Also, an op ical p eamp was used o ups eam de ec ion, since he e was no RB limi a ion, and OLT cos s a e sha ed among all use s. This scena io was in ended as an imp o ed access ne wo k, co e ing as many use s as possible (up o 1280). 16 km 16 km 2.4 km 2.2 km 1x40 AWG 1:32 Powe spli e ONU MZM PPG1 OLT Tx LASER To pho ode ec ion Fig. 6. Scheme o scena io 3 Now, o al ne wo k losses we e measu ed o be 26.6 dB. The ONU inpu powe was o -16.6 dBm, and i s ou pu powe was measu ed o be o +0.8 dBm, as in he second scena io. Please no e ha he Rayleigh backsca e ed signal was negligible, and he OLT ou pu powe could be inc eased o +10 dBm. Unde hese op imized condi ions, ups eam and downs eam ansmission cu es we e measu ed. Resul s a e shown in Fig. 3. Fo he downs eam we ound a sensi i i y o -19.6 dBm, while o he ups eam he sensi i i y ound was o -28.8 dBm, bo h o a BER o 10 -10 . This means ha we achie ed a symme ical powe budge o 29.6 dB (sys em ma gin o 4 dB). Table 1 shows a summa y compa ison be ween he h ee scena ios. Tab. 1. Summa y o he 3 scena ios Powe Budge Ups eam Downs eam Sys em ma gin Scena io 1 20.1 dB 19.4 dB 3.4 dB Scena io 2 19.8 dB 20.6 dB 3.4 dB Scena io 3 29.6 dB 29.6 dB 4 dB Conclusions An ad anced hyb id TDM/WDM access solu ion has been s udied and expe imen ally demons a ed. I is based on he ansmission o 2.5 Gbps SCM downs eam and 1.25 Gbps ups eam using colou less e lec i e ONU. Th ee scena ios we e e alua ed: La ge co e age a ea and low densi y o use s; a ea wi h medium densi y o use s; and imp o ed access ne wo k, co e ing as much use s as possible. In he i s and second es -beds, ansmission expe imen s ha e shown a ne wo k powe budge o 20 dB, o a single ibe con igu a ion, combined wi h he capaci y o se e up o 160 use s. Fo he hi d one, he powe budge could be inc eased up o 29 dB, ma ching clea ly he ypical alues o GPON deploymen s, and se ing up o 1280 use s. In all he cases a minimum sys em ma gin o 3 dB was achie ed. This wo k was suppo ed by Tellabs, he EU-FP7 SARDANA p ojec , and he MEC PTA-2003-02-00874 g an . Re e ences [1] W. Hung, C-K Chan, L-K Chen and C. Lin, "Sys em cha ac e iza ion o a obus emodula ion scheme wi h DPSK downs eam a ic in a WDM access ne wo k", in P oceedings ECOC 2003, Rimini, We3.4.5 (2003). [2] J. P a , C. A ellano, V. Polo, and C. Bock, ”Op ical Ne wo k Uni Based on a Bidi ec ional Re lec i e Semiconduc o Op ical Ampli ie o Fibe - o- he-Home Ne wo ks,” Pho onics Technology Le e s, 17, 250-252 (2005) [3] K. Y. Cho, A. Mu akami, Y. J. Lee, A. Aga a, Y. Takushima, and Y. C. Chung, ”Demons a ion o RSOA-Based WDM PON Ope a ing a Symme ic Ra e o 1.25 Gb/s wi h High Re lec ion Tole ance,” in P oceedings OFC 2008, San Diego, OTuH4 (2008). [4] J.M. Fab ega e al, “Demons a ion o a ull duplex PON ea u ing 2.5 Gbps Sub Ca ie Mul iplexing downs eam and 1.25 Gbps ups eam wi h colou less ONU and simple op ics,” in P oceedings ECOC 2008, B ussels, We1.F.6 (2008) a1144_1.pd OSA / OFC/NFOEC 2010 NWB5.pd