Contributions  |
|
Number
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Title
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Source
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AI/Question
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Date
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[ 308 ]
|
G.fast: optimized vectoring method for high-frequency band
Duplicate of C382
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Adaptive Spectrum and Signal Alignment (ASSIA) Inc.
,
ZTE Corporation (China)
|
Q4/15
|
2017-06-06 |
|
[ 307 ]
|
Resolving GNSS Errors- WD_GNSS
|
Orange (France)
|
Q13/15
|
2017-06-06 |
|
[ 306 ]
|
Revision of structure/format of "Appendix for GNSS receiver usage"document
|
Nokia USA
,
Orange (France)
|
Q13/15
|
2017-06-06 |
|
[ 305 ]
|
Text clarifications on the clause "Short-term interruption" in G.8262/G.8262.1
|
Calnex Solutions Limited
,
Orange (France)
|
Q13/15
|
2017-06-06 |
|
[ 304 ]
|
Study of PTP transients in congruent/non-congruent scenario
|
Orange (France)
|
Q13/15
|
2017-06-06 |
|
[ 303 ]
|
Fronthaul network reference model
|
Orange (France)
|
Q13/15
|
2017-06-06 |
|
[ 302 ]
|
Fronthaul synchronization requirements
|
Orange (France)
|
Q13/15
|
2017-06-06 |
|
[ 301 ]
|
Impact of functional splits on synchronization requirements
|
Orange (France)
|
Q13/15
|
2017-06-06 |
|
[ 300 ]
|
APTS scenarios in 8271.2 and 8273.4
|
Nokia Corporation
|
Q13/15
|
2017-06-06 |
|
[ 299 ]
|
G.fast: optimized vectoring method for high-frequency band
Duplicate of C382
|
Adaptive Spectrum and Signal Alignment (ASSIA) Inc.
,
ZTE Corporation (China)
|
Q4/15
|
2017-06-06 |
|
[ 298 ]
|
G.fast: optimized vectoring method for high-frequency band
Duplicate of C382
|
ZTE Corporation (China)
,
ZTE Corporation (China)
|
Q4/15
|
2017-06-06 |
|
[ 297 ]
|
G.fast: optimized vectoring method for high-frequency band
Duplicate of C382
|
Adaptive Spectrum and Signal Alignment (ASSIA) Inc.
,
ZTE Corporation (China)
|
Q4/15
|
2017-06-06 |
|
[ 296 ]
|
G.fast: optimized vectoring method for high-frequency band
Duplicate of C382
|
Adaptive Spectrum and Signal Alignment (ASSIA) Inc.
,
ZTE Corporation (China)
|
Q4/15
|
2017-06-06 |
|
[ 295 ]
|
DC-OFDM PHY layer working text
|
Maxlinear Inc (United States)
|
Q18/15
|
2017-06-06 |
|
[ 294 ]
(Rev.1-2) |
Frequency Amplitude Estimation Method for G.8273.2 Appendix VI
|
Calnex Solutions Limited
,
RAD Data Communications, Ltd.
|
Q13/15
|
2017-06-06 |
|
[ 293 ]
|
G.fast: optimized vectoring method for high-frequency band
Duplicate of C382
|
Adaptive Spectrum and Signal Alignment (ASSIA) Inc.
,
ZTE Corporation (China)
|
Q4/15
|
2017-06-06 |
|
[ 292 ]
|
G.hn Evolution: Update on definitions regarding band usage
|
Maxlinear Inc (United States)
|
Q18/15
|
2017-06-06 |
|
[ 291 ]
|
G.hn: MMPL compression
|
Sigma Designs Israel S.D.I Ltd.
|
Q18/15
|
2017-06-06 |
|
[ 290 ]
|
G.hn Evolution: Revised PHY Framing Proposal
|
Maxlinear Inc (United States)
|
Q18/15
|
2017-06-06 |
|
[ 289 ]
+Corr.1 |
Comments and Proposals for G.8273.2 Appendix VI Choice of Frequencies for Measuring Noise Transfer
|
RAD Data Communications, Ltd.
|
Q13/15
|
2017-06-06 |
|
[ 288 ]
|
G.fast: cDTA working text
|
ADTRAN (United States)
,
Sckipio Technologies S.I. Ltd. (Israel)
|
Q4/15
|
2017-06-06 |
|
[ 287 ]
|
G.fast: Proposal for an Improved cDTA Framework
|
ADTRAN (United States)
,
Sckipio Technologies S.I. Ltd. (Israel)
|
Q4/15
|
2017-06-06 |
|
[ 286 ]
|
G.hn Evolution: Repetition Encoding scheme for G.hn evolution
|
Maxlinear Inc (United States)
|
Q18/15
|
2017-06-06 |
|
[ 285 ]
|
Proposal on new Recommendation "Optical fibre cables for in-home directly wall surface applications"
|
China Mobile Communications Corporation
,
China Unicom
,
FiberHome Technologies Group (China)
,
Ministry of Industry and Information Technology (MIIT) (China)
|
Q16/15
|
2017-06-06 |
|
[ 284 ]
(Rev.1) |
Proposal of fiber characteristics and optical wavelength for G.RoF draft document
|
Electronics and Telecommunications Research Institute (ETRI) (Korea (Rep. of))
|
Q2/15
|
2017-06-06 |
|
[ 283 ]
|
Revision of G.RoF system architectures for indoor DAS applications
|
Electronics and Telecommunications Research Institute (ETRI) (Korea (Rep. of))
|
Q2/15
|
2017-06-06 |
|
[ 282 ]
|
G.hn: Clarifications on working text for centralized coordination
|
Maxlinear Inc (United States)
|
Q18/15
|
2017-06-06 |
|
[ 281 ]
|
G.fast: Comparing different proposals to implement DTA for environments with crosstalk (a.k.a Coordinated DTA)
|
Sckipio Technologies S.I. Ltd. (Israel)
|
Q4/15
|
2017-06-06 |
|
[ 280 ]
|
G.fast: Proposed clarification to G.9701 (corrigendum) to address the BBF's liaison to Q4/15 titled "Seeking clarification on interaction of FRA and SRA operations in G.fast"
|
Sckipio Technologies S.I. Ltd. (Israel)
|
Q4/15
|
2017-06-06 |
|
[ 279 ]
|
G.occ: Proposal on the format of the PHY frame for OCC
|
Huawei Technologies Co., Ltd. (China)
|
Q18/15
|
2017-06-06 |
|
[ 278 ]
|
G.occ: Proposed method to improve data rate of OCC system
|
Huawei Technologies Co., Ltd. (China)
|
Q18/15
|
2017-06-06 |
|
[ 277 ]
|
G.occ: Proposed modulation scheme for OCC
|
Huawei Technologies Co., Ltd. (China)
|
Q18/15
|
2017-06-06 |
|
[ 276 ]
|
G.occ: Draft working text for the new OCC Recommendation
|
Huawei Technologies Co., Ltd. (China)
|
Q18/15
|
2017-06-06 |
|
[ 275 ]
|
G.vlc: Proposed profiles for G.vlc-hs
|
Huawei Technologies Co., Ltd. (China)
|
Q18/15
|
2017-06-06 |
|
[ 274 ]
|
G.vlc: Considerations on the MAC scheduling in CM domain
|
Huawei Technologies Co., Ltd. (China)
|
Q18/15
|
2017-06-06 |
|
[ 273 ]
|
G.vlc: Proposed contention based mechanism for the half duplex MAC
|
Huawei Technologies Co., Ltd. (China)
|
Q18/15
|
2017-06-06 |
|
[ 272 ]
|
G.vlc: Proposed contention based mechanism for the full duplex MAC
|
Huawei Technologies Co., Ltd. (China)
|
Q18/15
|
2017-06-06 |
|
[ 271 ]
+Corr.1 |
Editorial Comments on G.8275.1
|
RAD Data Communications, Ltd.
|
Q13/15
|
2017-06-06 |
|
[ 270 ]
+Corr.1 |
Editorial Comments on G.8275.2
|
RAD Data Communications, Ltd.
|
Q13/15
|
2017-06-06 |
|
[ 269 ]
|
Consideration on frequency selection and frequency recovery for the G.8273.2 noise transfer test
|
China Unicom
|
Q13/15
|
2017-06-06 |
|
[ 268 ]
|
Clarification on WD39 of Shanghai meeting
|
China Unicom
,
ZTE Corporation (China)
|
Q13/15
|
2017-06-06 |
|
[ 267 ]
|
An Example of Operation Generalization - Batch Query
|
ZTE Corporation (China)
|
Q14/15
|
2017-06-06 |
|
[ 266 ]
|
Applicability of G.8032 to networks using microwave links
|
Huawei Technologies Co., Ltd. (China)
|
Q9/15
|
2017-06-06 |
|
[ 265 ]
|
Flush Logic in G.8032
|
Huawei Technologies Co., Ltd. (China)
,
Nokia Corporation
|
Q9/15
|
2017-06-06 |
|
[ 264 ]
|
Monitoring Time Offset in PTP Connections [G.8275.1, G.Suppl.SyncOAM]
|
Huawei Technologies Co., Ltd. (China)
,
ZTE Corporation (China)
|
Q13/15
|
2017-06-06 |
|
[ 263 ]
|
PDV noise tolerance test of G.8263
|
China Unicom
,
Huawei Technologies Co., Ltd. (China)
,
Orange (France)
|
Q13/15
|
2017-06-06 |
|
[ 262 ]
|
Title revision of Q13 recommendation
|
Orange (France)
,
CAICT
,
China Mobile Communications Corporation
,
China Unicom
,
Huawei Technologies Co., Ltd. (China)
|
Q13/15
|
2017-06-06 |
|
[ 261 ]
|
Network limit of G.8271.2
|
Huawei Technologies Co., Ltd. (China)
|
Q13/15
|
2017-06-06 |
|
[ 260 ]
|
Cable delay effects and correction in a GNSS receiver
|
Nokia Corporation
|
Q13/15
|
2017-06-06 |
|
[ 259 ]
|
Initial PTP simulation Results for HRMs containing eEECs, ePRTCs, and Class C T-BCs
|
Huawei Technologies Co., Ltd. (China)
|
Q13/15
|
2017-06-06 |
Results:2858 total items. Result page:
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