Please enter the search related information in the fields below. Partial information works, e.g. "SP-21
" in the "tdoc" field lists all TSG SA documents from 2021. Regular expressions mostly work in all fields (e.g. "2[34].501
" in the "Spec" field lists all documents related to 23.501 and 24.501. Capitalization is disregarded, i.e. "3GPP
" gives the same results as "3gpp
".
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tdoc | Title | Type / Revs | Source | Spec / CR | S/WID | Release | Meeting | Status | Links |
---|---|---|---|---|---|---|---|---|---|
R1-1608708 | Optimized PAPR/CM SC-CPS Waveform and Further Results | other | Idaho National Laboratory | FS_NR_newRAT | Rel-14 |
R1-86 AI: 8.1.1.1 |
withdrawn | [WTS] [JSN] | |
R1-1608709 | Optimized PAPR/CM SC-CPS Waveform and Further Results | other | Idaho National Laboratory | FS_NR_newRAT | Rel-14 |
R1-86 AI: 8.1.1.1 |
noted | [WTS] [JSN] | |
R1-1608800 | Discussion on real domain OFDM for mMTC | other | Fujitsu |
R1-86 AI: 8.1.1.1 |
available | [WTS] [JSN] | |||
R1-1608825 | Low-complexity filter implementation for f-OFDM | other | Huawei, HiSilicon |
R1-86 AI: 8.1.1.1 |
available | [WTS] [JSN] | |||
R1-1608826 | Delay analysis for f-OFDM | other | Huawei, HiSilicon |
R1-86 AI: 8.1.1.1 |
available | [WTS] [JSN] | |||
R1-1608827 | Analysis of guard band for FDM of different numerologies in a NR carrier | other | Huawei, HiSilicon |
R1-86 AI: 8.1.1.1 |
available | [WTS] [JSN] | |||
R1-1608828 | Overview of PAPR reduction techniques | other | Huawei, HiSilicon |
R1-86 AI: 8.1.1.1 |
available | [WTS] [JSN] | |||
R1-1608829 | Uplink coverage performance of OFDM with PAPR reduction for below 6 GHz | other | Huawei, HiSilicon |
R1-86 AI: 8.1.1.1 |
noted | [WTS] [JSN] | |||
R1-1608868 | Analysis of spectral utilization in a NR carrier | other | Huawei, HiSilicon |
R1-86 AI: 8.1.1.1 |
available | [WTS] [JSN] | |||
R1-1608916 | Further considerations on waveform configuration | discussion | Spreadtrum Communications | Rel-14 |
R1-86 AI: 8.1.1.1 |
available | [WTS] [JSN] | ||
R1-1609033 | Discussion on Low PAPR waveform for UL | other | Samsung |
R1-86 AI: 8.1.1.1 |
available | [WTS] [JSN] | |||
R1-1609034 | Evaluation results of Low PAPR waveform | other | Samsung |
R1-86 AI: 8.1.1.1 |
noted | [WTS] [JSN] | |||
R1-1609035 | Evaluation results of guard-band supporting methods | other | Samsung |
R1-86 AI: 8.1.1.1 |
available | [WTS] [JSN] | |||
R1-1609222 | Discussion on DFT-s-OFDM and CP-OFDM for Uplink | discussion | LG Electronics |
R1-86 AI: 8.1.1.1 |
noted | [WTS] [JSN] | |||
R1-1609299 | Discussion and evaluation of UL Waveforms | other | CMCC |
R1-86 AI: 8.1.1.1 |
noted | [WTS] [JSN] | |||
R1-1609378 | A New DFTS-OFDM Compatible Low PAPR Technique for NR Uplink Waveforms | discussion | MediaTek Inc. |
R1-86 AI: 8.1.1.1 |
noted | [WTS] [JSN] | |||
R1-1609383 | Summary of Link level analysis of candidate waveforms for NR | discussion | AT&T GNS Belgium SPRL | Rel-15 |
R1-86 AI: 8.1.1.1 |
available | [WTS] [JSN] | ||
R1-1609384 | Network Assisted Waveform Selection for NR | discussion | AT&T GNS Belgium SPRL | Rel-15 |
R1-86 AI: 8.1.1.1 |
noted | [WTS] [JSN] | ||
R1-1609390 | Low PAPR Waveform Design for NR | discussion | IITH |
R1-86 AI: 8.1.1.1 |
noted | [WTS] [JSN] | |||
R1-1609419 | In-band Tx requirements for FDM of different numerologies in a NR carrier | other | Huawei, HiSilicon |
R1-86 AI: 8.1.1.1 |
available | [WTS] [JSN] | |||
R1-1609420 | In-band Rx requirements for FDM of different numerologies in a NR carrier | other | Huawei, HiSilicon |
R1-86 AI: 8.1.1.1 |
available | [WTS] [JSN] | |||
R1-1609493 | Single carrier based waveform for high frequency bands above 40 GHz | discussion | Intel Corporation |
R1-86 AI: 8.1.1.1 |
available | [WTS] [JSN] | |||
R1-1609494 | Further discussion on GI-DFT-s-OFDM for high frequency bands above 40 GHz | discussion | Intel Corporation |
R1-86 AI: 8.1.1.1 |
available | [WTS] [JSN] | |||
R1-1609495 | Views on multiple NR waveform proposals for high bands | discussion | Intel Corporation |
R1-86 AI: 8.1.1.1 |
available | [WTS] [JSN] | |||
R1-1609496 | Considerations on NR waveform with improved spectral containment | discussion | Intel Corporation |
R1-86 AI: 8.1.1.1 |
available | [WTS] [JSN] | |||
R1-1609564 | Implementation-specific UF-OFDM for New Radio | discussion | Nokia, Alcatel-Lucent Shanghai Bell |
R1-86 AI: 8.1.1.1 |
available | [WTS] [JSN] | |||
R1-1609567 | On UL Waveforms below 40 GHz | discussion | Nokia, Alcatel-Lucent Shanghai Bell |
R1-86 AI: 8.1.1.1 |
noted | [WTS] [JSN] | |||
R1-1609568 | Out of band emissions, in-band emissions and EVM requirement considerations for NR | discussion | Nokia, Alcatel-Lucent Shanghai Bell |
R1-86 AI: 8.1.1.1 |
available | [WTS] [JSN] | |||
R1-1609596 | Waveform Simulation Results for Above 40 GHz |
discussion revised to R1-1610403 |
Nokia, Alcatel-Lucent Shanghai Bell |
R1-86 AI: 8.1.1.1 |
revised | [WTS] [JSN] | |||
R1-1609597 | Waveform proposal for carrier frequencies beyond 40 GHz | discussion | Nokia, Alcatel-Lucent Shanghai Bell |
R1-86 AI: 8.1.1.1 |
available | [WTS] [JSN] | |||
R1-1609598 | Potential for system level gains for low-PAPR waveforms | discussion | Nokia, Alcatel-Lucent Shanghai Bell |
R1-86 AI: 8.1.1.1 |
available | [WTS] [JSN] | |||
R1-1609599 | Way forward waveform for carrier frequencies beyond 40 GHz | discussion | Nokia, Alcatel-Lucent Shanghai Bell, Mitsubishi Electric, InterDigital Communications |
R1-86 AI: 8.1.1.1 |
available | [WTS] [JSN] | |||
R1-1609643 | On UL waveform - discussion | discussion | Ericsson |
R1-86 AI: 8.1.1.1 |
withdrawn | [WTS] [JSN] | |||
R1-1609644 | On UL waveform - evaluation |
discussion revised to R1-1610441 |
Ericsson |
R1-86 AI: 8.1.1.1 |
revised | [WTS] [JSN] | |||
R1-1609778 | Further discussions on FB-OFDM | other | ZTE, ZTE Microelectronics |
R1-86 AI: 8.1.1.1 |
available | [WTS] [JSN] | |||
R1-1609779 | Further evaluations on FB-OFDM | other | ZTE, ZTE Microelectronics |
R1-86 AI: 8.1.1.1 |
available | [WTS] [JSN] | |||
R1-1609780 | Text Proposal on TR38.802 for NR waveform | other | ZTE, ZTE Microelectronics |
R1-86 AI: 8.1.1.1 |
available | [WTS] [JSN] | |||
R1-1609792 | mmWave UW DFTsOFDM link level evaluation | discussion | Mitsubishi Electric |
R1-86 AI: 8.1.1.1 |
available | [WTS] [JSN] | |||
R1-1609813 | Uplink waveform evaluations and proposals for NR Phase 1 | discussion | Panasonic Corporation |
R1-86 AI: 8.1.1.1 |
noted | [WTS] [JSN] | |||
R1-1609825 | OTFS Performance in High Doppler with Varying Subcarrier Spacing | discussion | Cohere Technologies |
R1-86 AI: 8.1.1.1 |
available | [WTS] [JSN] | |||
R1-1609887 | Coexistence of CP OFDM and CP DFT-s-OFDM for NR UL | discussion | InterDigital Communications |
R1-86 AI: 8.1.1.1 |
available | [WTS] [JSN] | |||
R1-1609889 | Waveform design considerations for carrier frequencies above 40 GHz | discussion | InterDigital Communications | Rel-14 |
R1-86 AI: 8.1.1.1 |
available | [WTS] [JSN] | ||
R1-1610015 | Specification impact of DFTs-OFDM vs OFDM | discussion | Qualcomm Incorporated |
R1-86 AI: 8.1.1.1 |
available | [WTS] [JSN] | |||
R1-1610054 | Views on UL waveform for NR | discussion | NTT DOCOMO, INC. |
R1-86 AI: 8.1.1.1 |
noted | [WTS] [JSN] | |||
R1-1610107 | Precoder flexibility and forward compatibility of CPS-OFDM waveform | discussion | National Taiwan University |
R1-86 AI: 8.1.1.1 |
available | [WTS] [JSN] | |||
R1-1610108 | Evaluation results of CPS-OFDM waveform | discussion | National Taiwan University |
R1-86 AI: 8.1.1.1 |
available | [WTS] [JSN] | |||
R1-1610111 | Phase I Waveform proposal: CP-OFDM plus DFT-s-OFDM | discussion | Qualcomm Incorporated |
R1-86 AI: 8.1.1.1 |
available | [WTS] [JSN] | |||
R1-1610112 | On the impact of beamforming to link budget comparison of DFTs-OFDM and OFDM | discussion | Qualcomm Incorporated |
R1-86 AI: 8.1.1.1 |
available | [WTS] [JSN] | |||
R1-1610113 | Coverage analysis of DFT-s-OFDM and OFDM with low PAPR techniques | discussion | Qualcomm Incorporated |
R1-86 AI: 8.1.1.1 |
noted | [WTS] [JSN] | |||
R1-1610114 | User Multiplexing of DFTs-OFDM and OFDM in uplink | discussion | Qualcomm Incorporated |
R1-86 AI: 8.1.1.1 |
available | [WTS] [JSN] | |||
R1-1610116 | UL waveform considerations for mmW | discussion | Qualcomm Incorporated |
R1-86 AI: 8.1.1.1 |
available | [WTS] [JSN] | |||
R1-1610117 | Common PAPR reduction techniques for OFDM / DFT-s-OFDM | discussion | Qualcomm Incorporated |
R1-86 AI: 8.1.1.1 |
available | [WTS] [JSN] | |||
R1-1610224 | Coexistence of DFTsOFDM and OFDM in UL below 40GHz | discussion | Mitsubishi Electric RCE |
R1-86 AI: 8.1.1.1 |
noted | [WTS] [JSN] | |||
R1-1610238 | FC-OFDM discussion based on RAN1#86 agreement | discussion | ORANGE |
R1-86 AI: 8.1.1.1 |
available | [WTS] [JSN] | |||
R1-1610309 | flexi-OFDMA, a new waveform for NR | discussion | CEWiT, IIT-H, IIT-M, Reliance Jio, Tejas Networks |
R1-86 AI: 8.1.1.1 |
available | [WTS] [JSN] | |||
R1-1610397 | OTFS PAPR Analysis |
discussion revised to R1-1610446 |
Cohere Technologies |
R1-86 AI: 8.1.1.1 |
revised | [WTS] [JSN] | |||
R1-1610403 | Waveform Simulation Results for Above 40 GH |
discussion revision of R1-1609596 |
Nokia, Alcatel-Lucent Shanghai Bell |
R1-86 AI: 8.1.1.1 |
available | [WTS] [JSN] | |||
R1-1610404 | FC-OFDM discussion based on RAN1#86 waveform agreements | discussion | ORANGE |
R1-86 AI: 8.1.1.1 |
withdrawn | [WTS] [JSN] | |||
R1-1610441 | On UL waveform - evaluation |
discussion revision of R1-1609644 |
Ericsson |
R1-86 AI: 8.1.1.1 |
available | [WTS] [JSN] | |||
R1-1610446 | OTFS PAPR Analysis |
discussion revision of R1-1610397 |
Cohere Technologies |
R1-86 AI: 8.1.1.1 |
noted | [WTS] [JSN] | |||
R1-1610485 | Way Forward on Waveform for NR Uplink | discussion | Qualcomm, Orange, OPPO, ZTE, ZTE Microelectronics, InterDigital, MediaTek, LGE, IITH, Idaho National Lab, Mitsubishi, Panasonic, Vivo, Tejas Networks, IITM, CEWIT, Straight Path, NTU, Kyocera, Samsung, Spreadtrum, Reliance-jio, Sharp, AT&T, Xiaomi, Sony, NEC, Motorola, Lenovo, National Instrument, Apple |
R1-86 AI: 8.1.1.1 |
noted | [WTS] [JSN] | |||
R1-1610823 | Way Forward on Network Assistance for NR Uplink Waveform | discussion | AT&T, Huawei |
R1-86 AI: 8.1.1.1 |
withdrawn | [WTS] [JSN] |
62 documents (0.32301998138428 seconds)