Contributions�� |
�
|
Number�
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Title
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Source
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AI/Question
|
Date
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[ 903 ]
�
� |
25G & 50G OTN Signal Interface definition : optimized frame structures options comparison
�
� |
FiberHome Technologies Group (China)
� |
Q11/15
� |
2018-09-24 |
|
[ 902 ]
�
� |
25G & 50G OTN signal interface definition : requirements and considerations
�
� |
China Telecommunications Corporation
,
FiberHome Technologies Group (China)
,
Xilinx Incorporation
� |
Q11/15
� |
2018-09-24 |
|
[ 901 ]
�
� |
Resolution of study point 6 of G.808.2 revision living list
�
� |
Coriant GmbH & Co. KG (Germany)
� |
Q9/15
� |
2018-09-23 |
|
[ 900 ]
�
� |
Resolution of study point 5 of G.808.2 revision living list
�
� |
Coriant GmbH & Co. KG (Germany)
� |
Q9/15
� |
2018-09-23 |
|
[ 899 ]
�
� |
Resolution of study points 1, 2, and 4 of G.808.2 revision living list
�
� |
Coriant GmbH & Co. KG (Germany)
� |
Q9/15
� |
2018-09-23 |
|
[ 898 ]
�
� |
Consideration of ring interconnection modeling in G.8052.2
�
� |
FiberHome Technologies Group (China)
� |
Q14/15
� |
2018-09-23 |
|
[ 897 ]
�
� |
Consideration of OTSiA connection management requirements
�
� |
FiberHome Technologies Group (China)
� |
Q14/15
� |
2018-09-23 |
|
[ 896 ]
�
� |
25G & 50G OTN interface signal bit rate selection considerations
�
� |
FiberHome Technologies Group (China)
� |
Q6/15, Q11/15
� |
2018-09-23 |
|
[ 895 ]
�
� |
Considerations Sub1G OTN solutions
�
� |
FiberHome Technologies Group (China)
� |
Q11/15
� |
2018-09-23 |
|
[ 894 ]
�
� |
Considerations for sub1G OTN
�
� |
FiberHome Technologies Group (China)
� |
Q11/15
� |
2018-09-23 |
|
[ 893 ]
�
� |
Proposed A.1 for G.7718&G.7718.1
�
� |
Nokia Shanghai Bell Co. Ltd. (China)
,
Nokia Shanghai Bell Co. Ltd. (China)
� |
Q14/15
� |
2018-09-23 |
|
[ 892 ]
�
(Rev.1)� |
Alignment of the LAG model in G.8021 and G.8052
�
� |
Nokia Shanghai Bell Co. Ltd. (China)
,
Nokia Shanghai Bell Co. Ltd. (China)
� |
Q14/15
� |
2018-09-23 |
|
[ 891 ]
�
(Rev.1)� |
MIs in G.8051 align to G.8023
�
� |
Nokia Shanghai Bell Co. Ltd. (China)
,
Nokia Shanghai Bell Co. Ltd. (China)
� |
Q14/15
� |
2018-09-23 |
|
[ 890 ]
�
(Rev.1)� |
Station clock output in Sync-mgmt model
�
� |
Nokia Shanghai Bell Co. Ltd. (China)
� |
Q14/15
� |
2018-09-23 |
|
[ 889 ]
�
� |
T-BC Test results over 10G interface
�
� |
ADVA Optical Networking (United Kingdom)
� |
Q13/15
� |
2018-09-23 |
|
[ 888 ]
�
(Rev.1)� |
Proposed fault management function for fast SDN controller based restoration inside transport equipment
�
� |
Electronics and Telecommunications Research Institute (ETRI) (Korea (Rep. of))
,
FiberHome Technologies Group (China)
,
Huawei Technologies Co., Ltd. (China)
,
KT Corporation (Korea (Rep. of))
,
SK Telecom (Korea (Rep. of))
� |
Q14/15, Q12/15
� |
2018-09-23 |
|
[ 887 ]
�
� |
G.ploam: Showtime reconfiguration G.ploam parameter definitions
�
� |
Adaptive Spectrum and Signal Alignment (ASSIA) Inc. (United States)
� |
Q4/15
� |
2018-09-22 |
|
[ 886 ]
�
� |
G.fast: Showtime reconfiguration parameter exchange at initialization
�
� |
Adaptive Spectrum and Signal Alignment (ASSIA) Inc. (United States)
� |
Q4/15
� |
2018-09-22 |
|
[ 885 ]
�
(Rev.1)� |
G.fast: SREC Table edits to accommodate control parameter names
�
� |
Adaptive Spectrum and Signal Alignment (ASSIA) Inc. (United States)
� |
Q4/15
� |
2018-09-22 |
|
[ 884 ]
�
� |
Proposed text for G.ctn5g clauses 3.2 and 10
�
� |
Nokia USA
� |
Q11/15
� |
2018-09-21 |
|
[ 883 ]
�
� |
G.fast and MGfast control parameters for vectoring and TGV
�
� |
AT&T, Inc. (United States)
� |
Q4/15
� |
2018-09-21 |
|
[ 882 ]
�
� |
Protocol-based channel bonding in G.HSP.ComTC
�
� |
Futurewei Technologies US R&D Center (United States)
� |
Q2/15
� |
2018-09-21 |
|
[ 881 ]
�
� |
Discussion on rate related TC layer spec in G.HSP.ComTC
�
� |
Futurewei Technologies US R&D Center (United States)
� |
Q2/15
� |
2018-09-21 |
|
[ 880 ]
�
� |
FEC Code in IEEE P802.3ca and ITU 50GPON FEC Discussion
�
� |
Futurewei Technologies US R&D Center (United States)
� |
Q2/15
� |
2018-09-21 |
|
[ 879 ]
�
� |
Real-Time Measurements on Soft-Decision LDPC for 50G-PON
�
� |
Futurewei Technologies US R&D Center (United States)
� |
Q2/15
� |
2018-09-21 |
|
[ 878 ]
�
� |
Proposed appendix material on the Sharpness of OOC
�
� |
Futurewei Technologies US R&D Center (United States)
� |
Q2/15
� |
2018-09-21 |
|
[ 877 ]
�
� |
A generic methodology for the definition of OTN sub-Gigabit containers
�
� |
Huawei Technologies Co., Ltd. (China)
,
SM Optics s.r.l. (Italy)
� |
Q11/15
� |
2018-09-21 |
|
[ 876 ]
�
� |
Proposed 25G and 50G ODU25n and FlexO-1-RS-m (m=1,2) specification
�
� |
Huawei Technologies Co., Ltd. (China)
� |
Q11/15
� |
2018-09-21 |
|
[ 875 ]
�
� |
Software defined network slice
�
� |
Huawei Technologies Co., Ltd. (China)
� |
Q14/15, Q12/15, Q11/15
� |
2018-09-21 |
|
[ 874 ]
�
� |
Naming of adaptation functions at the boundary of optical and OTU layers
�
� |
FiberHome Technologies Group (China)
,
Huawei Technologies Co., Ltd. (China)
� |
Q14/15, Q12/15, Q11/15
� |
2018-09-21 |
|
[ 873 ]
�
� |
Add support for matrix media channel in OTSiA|OCh_C function
�
� |
FiberHome Technologies Group (China)
,
Huawei Technologies Co., Ltd. (China)
� |
Q14/15, Q11/15
� |
2018-09-21 |
|
[ 872 ]
�
� |
Proposal to define a hybrid tributary slot structure for an OPUCn
�
� |
Huawei Technologies Co., Ltd. (China)
� |
Q11/15
� |
2018-09-21 |
|
[ 871 ]
�
� |
OTSi to FlexO-1-SC adaptation atomic function model
�
� |
Huawei Technologies Co., Ltd. (China)
� |
Q11/15
� |
2018-09-21 |
|
[ 870 ]
�
� |
FlexO atomic function model consideration to support a higher bit rate
�
� |
Huawei Technologies Co., Ltd. (China)
� |
Q11/15
� |
2018-09-21 |
|
[ 869 ]
�
� |
200G and 400G FlexE atomic function model proposal
�
� |
Coriant GmbH & Co. KG (Germany)
,
Huawei Technologies Co., Ltd. (China)
� |
Q11/15
� |
2018-09-21 |
|
[ 868 ]
�
� |
Proposals on the synchronization clause of G.ctn5g
�
� |
China Mobile Communications Corporation
� |
Q13/15, Q11/15
� |
2018-09-21 |
|
[ 867 ]
�
� |
Proposed extension of OTN L0 clients in G.709
�
� |
Huawei Technologies Co., Ltd. (China)
� |
Q11/15
� |
2018-09-21 |
|
[ 866 ]
�
� |
T-BC Class D specification
�
� |
China Mobile Communications Corporation
,
Huawei Technologies Co., Ltd. (China)
,
ZTE Corporation (China)
� |
Q13/15
� |
2018-09-21 |
|
[ 865 ]
�
� |
Proposed editorial enhancements to G.709
�
� |
Huawei Technologies Co., Ltd. (China)
� |
Q11/15
� |
2018-09-21 |
|
[ 864 ]
�
� |
Co-existence options for 50Gbit/s upstream
�
� |
ZTE Corporation (China)
� |
Q2/15
� |
2018-09-21 |
|
[ 863 ]
�
� |
Interconnection of ETH UNI and FlexE group UNI text proposal
�
� |
Ciena Canada
,
Huawei Technologies Co., Ltd. (China)
� |
Q11/15
� |
2018-09-21 |
|
[ 862 ]
�
� |
Line rate options for 50G-PON
�
� |
ZTE Corporation (China)
� |
Q2/15
� |
2018-09-21 |
|
[ 861 ]
�
� |
Proposal to add clock related associations to G.7711
�
� |
China Mobile Communications Corporation
� |
Q14/15
� |
2018-09-21 |
|
[ 860 ]
�
� |
Proposal to update the section 7.1.1.3 of G.sync-mgmt
�
� |
China Mobile Communications Corporation
� |
Q14/15
� |
2018-09-21 |
|
[ 859 ]
�
� |
Proposal to modify the Appendix I of G.sync-mgmt
�
� |
China Mobile Communications Corporation
� |
Q14/15
� |
2018-09-21 |
|
[ 858 ]
�
� |
Proposed A.1 for new recommendation G.709.sub1G
�
� |
China Telecommunications Corporation
,
Huawei Technologies Co., Ltd. (China)
,
Ministry of Industry and Information Technology (MIIT) (China)
,
SM Optics s.r.l. (Italy)
,
Telecom Italia S.p.A. (Italy)
,
Xilinx Incorporation (United States)
,
ZTE Corporation (China)
� |
Q11/15
� |
2018-09-21 |
|
[ 857 ]
�
(Rev.1-2)� |
Comments on G.9806
�
� |
Nippon Telegraph and Telephone Corporation (NTT) (Japan)
� |
Q2/15
� |
2018-09-21 |
|
[ 856 ]
�
(Rev.1)� |
Proposed text for G.709.3 with 200G and 400G CFEC interface (based on G.709.3 correspondence)
�
� |
China Telecommunications Corporation
,
China Unicom
,
Ciena Canada
,
FiberHome Technologies Group (China)
,
Huawei Technologies Co., Ltd. (China)
,
Inphi Corporation (United States)
� |
Q11/15
� |
2018-09-21 |
|
[ 855 ]
�
(Rev.1)� |
G.8271 Table A.7 Typo
�
� |
NEC Corporation (Japan)
� |
Q13/15
� |
2018-09-21 |
|
[ 854 ]
�
� |
G.798 FlexO model and (multi-)frame generation
�
� |
Ciena Canada
,
Intel Corporation (United States)
� |
Q11/15
� |
2018-09-21 |
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