Contribuciones |
|
Número
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Título
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Origen
|
AI/Cuestión
|
Fecha
|
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[ 1384 ]
|
cnPRTC optical link PTP rate (G.8271)
|
Microsemi Corporation (United States)
|
Q13/15
|
2019-06-18 |
|
[ 1383 ]
|
G.8273.2 Appendix V new material
|
Microsemi Corporation (United States)
|
Q13/15
|
2019-06-18 |
|
[ 1382 ]
|
T-BC Class D chain time error accumulation (G.8273.2)
|
Microsemi Corporation (United States)
|
Q13/15
|
2019-06-18 |
|
[ 1381 ]
|
T-BC Class D performance (G.8273.2)
|
Microsemi Corporation (United States)
|
Q13/15
|
2019-06-18 |
|
[ 1380 ]
|
G.8275 profile translation
|
Microsemi Corporation (United States)
|
Q13/15
|
2019-06-18 |
|
[ 1379 ]
|
Test results of Least Squares method for noise transfer
|
China Unicom
,
Huawei Technologies Co., Ltd. (China)
,
Ministry of Industry and Information Technology (MIIT) (China)
|
Q13/15
|
2019-06-18 |
|
[ 1378 ]
|
Asynchronous mapping and multiplexing of OTUC instances over FlexO
|
China Information Communication Technologies Group
|
Q11/15
|
2019-06-18 |
|
[ 1377 ]
|
Triple WDM co-existence wavelength plan
|
AT&T, Inc. (United States)
,
KT Corporation (Korea (Rep. of))
|
Q2/15
|
2019-06-18 |
|
[ 1376 ]
|
Evaluation of FEC Proposals for ITU G.709.3 200-400G 450km Black Link
|
China Information Communication Technologies Group
|
Q11/15
|
2019-06-18 |
|
[ 1375 ]
|
G.mgfast: dual/multiple-channel access
|
ZTE Corporation (China)
|
Q4/15
|
2019-06-18 |
|
[ 1374 ]
|
G.hn2: Proposal to update stable data rate annex
|
Hisilicon Technologies Co. Ltd. (China)
|
Q18/15
|
2019-06-18 |
|
[ 1373 ]
|
G.hn: Phy desription for G.hn technical paper
|
Hisilicon Technologies Co. Ltd. (China)
|
Q18/15
|
2019-06-18 |
|
[ 1372 ]
|
G.IoT: Proposal of base text for the start of G.IoT project
|
Hisilicon Technologies Co. Ltd. (China)
|
Q18/15
|
2019-06-18 |
|
[ 1371 ]
|
Parameters requirement of Devices using in Coexistence transmission of QKD system with classical WDM system
|
China Unicom
|
Q7/15
|
2019-06-18 |
|
[ 1370 ]
|
G.IoT: Proposal of a study on IoT for Smart Home over PLC
|
Hisilicon Technologies Co. Ltd. (China)
|
Q18/15
|
2019-06-18 |
|
[ 1369 ]
|
G.fast and MGfast performance control parameters
|
AT&T, Inc. (United States)
|
Q4/15
|
2019-06-18 |
|
[ 1368 ]
|
Discussion about 25G WDM interfaces
|
Ministry of Industry and Information Technology (MIIT) (China),
,
ZTE Corporation (China)
|
Q6/15
|
2019-06-18 |
|
[ 1367 ]
|
G.mgfast: On authentication of CPEs
|
Intel Corporation (United States)
|
Q4/15
|
2019-06-18 |
|
[ 1366 ]
|
G.mgfast: On the circulant values for LDPC encoding
|
Intel Corporation (United States)
|
Q4/15
|
2019-06-18 |
|
[ 1365 ]
|
Modification proposal on draft new Recommendation G.977.1
|
Communication Line Products Association of Japan
,
NEC Corporation (Japan)
,
Nippon Telegraph and Telephone Corporation (NTT) (Japan)
|
Q8/15
|
2019-06-18 |
|
[ 1364 ]
|
G.mgfast: Update of the working text describing upstream DBR
|
Intel Corporation (United States)
|
Q4/15
|
2019-06-18 |
|
[ 1363 ]
|
Proposal on terms and definitions related to interoperable submarine cable system in G.972
|
Communication Line Products Association of Japan
,
NEC Corporation (Japan)
,
Nippon Telegraph and Telephone Corporation (NTT) (Japan)
|
Q8/15
|
2019-06-18 |
|
[ 1362 ]
|
G.mgfast: On the upstream DBR procedure
|
Intel Corporation (United States)
|
Q4/15
|
2019-06-18 |
|
[ 1361 ]
|
Proposal on attenuation specification and spectral attenuation modelling for G.654.E fibre
|
China Unicom
,
Communication Line Products Association of Japan
,
Nippon Telegraph and Telephone Corporation (NTT) (Japan)
|
Q6/15, Q5/15
|
2019-06-18 |
|
[ 1360 ]
|
G.mgfast: Working text updates for the downstream DBR procedure
|
Intel Corporation (United States)
|
Q4/15
|
2019-06-18 |
|
[ 1359 ]
|
G.mgfast: On the MTU-R upstream transmit power in P2MP mode
|
Intel Corporation (United States)
|
Q4/15
|
2019-06-18 |
|
[ 1358 ]
|
G.mgfast: On the transmit PSD and power of sync symbols in P2MP scenario
|
Intel Corporation (United States)
|
Q4/15
|
2019-06-18 |
|
[ 1357 ]
|
G.fast: Interaction between TGV per line and G.994.1 handshake
|
Intel Corporation (United States)
|
Q4/15
|
2019-06-18 |
|
[ 1356 ]
|
NB-IoT eDRX Time Error
|
Epson Electronics America (United States)
|
Q13/15
|
2019-06-17 |
|
[ 1355 ]
|
G.8273.2 Class C, D Wander Generation data
|
Epson Electronics America (United States)
|
Q13/15
|
2019-06-17 |
|
[ 1354 ]
|
Joint_OMA Rationalization Discussion
|
Nokia USA (United States)
|
Q2/15
|
2019-06-17 |
|
[ 1353 ]
|
OTN Secure Transport
|
China Information Communication Technologies Group
,
Ciena Canada
,
Cisco Systems, Inc. (United States)
|
Q11/15
|
2019-06-17 |
|
[ 1352 ]
|
FlexO TPC Interleaver Proposal
|
Ciena Canada
|
Q11/15
|
2019-06-17 |
|
[ 1351 ]
|
FEC Burst Tolerance
|
Ciena Canada
|
Q6/15, Q11/15
|
2019-06-17 |
|
[ 1350 ]
|
G.Sup_sub1G "Sub 1 Gbit/s services transport over OTN" - Text proposal for defining legacy PDH/SDH signal mapping into sub1G OTN.
|
SM Optics s.r.l. (Italy)
|
Q11/15
|
2019-06-17 |
|
[ 1349 ]
|
Proposal on revision texts of Recommendation ITU-T L.151/L.34
|
China Information Communication Technologies Group
|
Q16/15
|
2019-06-17 |
|
[ 1348 ]
|
Text discussion for Management requirement of G.7718
|
China Information Communication Technologies Group
,
Nokia Shanghai Bell Co. Ltd. (China)
|
Q14/15
|
2019-06-17 |
|
[ 1347 ]
|
EVM parameter consideration for 200G and 400G
|
China Unicom
|
Q6/15
|
2019-06-17 |
|
[ 1346 ]
|
Specification of FlexO-LR interfaces for bit rates greater or equal than 200 Gbit/s
|
Acacia Communications, Inc (United States)
,
AT&T, Inc. (United States)
,
Cisco Systems, Inc. (United States)
,
Deutsche Telekom AG (Germany)
,
Infinera Corporation (United States)
,
Juniper Networks (United States)
,
Orange (France)
,
Telecom Italia S.p.A. (Italy)
,
Telefónica S.A. (Spain)
|
Q11/15
|
2019-06-17 |
|
[ 1345 ]
(Rev.1) |
Proposal to specify OFEC for FlexO-LR 450 km application
|
Acacia Communications, Inc (United States)
,
AT&T, Inc. (United States)
,
Cisco Systems, Inc. (United States)
,
Deutsche Telekom AG (Germany)
,
Fujitsu Limited (Japan)
,
Infinera Corporation (United States)
,
Juniper Networks (United States)
,
Lumentum (United States)
,
Nippon Telegraph and Telephone Corporation (NTT) (Japan)
,
Orange (France)
,
SM Optics s.r.l. (Italy)
,
Telecom Italia S.p.A. (Italy)
,
Telefónica S.A. (Spain)
|
Q11/15
|
2019-06-17 |
|
[ 1344 ]
(Rev.1-2) |
Consideration of OSNR monitoring with machine learning for optical network management
|
China Information Communication Technologies Group
,
China Unicom
|
Q6/15, Q14/15
|
2019-06-17 |
|
[ 1343 ]
(Rev.1-2) |
Modeling consideration for compound functions
|
China Information Communication Technologies Group
|
Q14/15
|
2019-06-17 |
|
[ 1342 ]
|
Optical fibre cable identification for network maintenance
|
China Unicom
|
Q17/15
|
2019-06-17 |
|
[ 1341 ]
(Rev.1) |
Consideration of Annex E.1.11 in G.7711
|
China Information Communication Technologies Group
|
Q14/15
|
2019-06-17 |
|
[ 1340 ]
|
Proposals for MTN section layer frame format and overhead
|
ZTE Corporation (China)
|
Q11/15
|
2019-06-17 |
|
[ 1339 ]
|
New FTS HRM supporting eCPRI fronthaul [G.8271.1]
|
Nokia Corporation (Finland)
|
Q13/15
|
2019-06-17 |
|
[ 1338 ]
|
Text proposal for POH overhead description in draft G.mtn
|
China Information Communication Technologies Group
|
Q11/15
|
2019-06-17 |
|
[ 1337 ]
|
Encoding rules check for different POH methods
|
China Information Communication Technologies Group
|
Q11/15
|
2019-06-17 |
|
[ 1336 ]
|
Discussion on the relationship between POH mechanism and IEEE802.3 state machine
|
China Information Communication Technologies Group
|
Q11/15
|
2019-06-17 |
|
[ 1335 ]
|
G.mtn Equipment Prototype Based on 6 Bytes POH
|
China Information Communication Technologies Group
|
Q11/15
|
2019-06-17 |
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