Way Forward Proposals for Inter-band CA Consisting of B41

Slides:



Advertisements
Similar presentations
Way forward for LTE DL 4Rx AP SI on RF
Advertisements

WF on design of physical downlink control channel for MTC CATT, Alcatel Lucent, Alcatel Lucent Shanghai Bell, Ericsson, ETRI, InterDigital, MediaTek, NTT.
WF on PBCH Coverage Enhancement
© 3GPP 2009 Mobile World Congress, Barcelona, 19 th February 2009 SLIDE 0 3GPP RAN4#73 UE RF AH Meeting Arrangement Jan, 2015 Oulu, Finland Tuomo.
Way forward on eIMTA signaling to support up to 32 component carriers
Dual Band Reference Design Results SHE February 2013.
WF on BS MMSE-IRC receiver
[Qualcomm, Ericsson, Nokia Networks, Huawei,…]
[Qualcomm, Ericsson, Nokia Networks, Huawei,…]
Way forward to NB-IoT 3GPP TSG RAN WG1 #83 R1-157xxx
WF on SIB1bis Transmission
WF on UE capability signaling for FD-MIMO Class B LG Electronics, Intel Coorporation, NTT DOCOMO, Qualcomm 3GPP TSG RAN WG1 Meeting #84 R St Julian’s,
Way Forward on NR UE Testability Intel Corporation, CATR 3GPP TSG-RAN WG4 Meeting #80bis R Ljubljana, Slovenia, August, 2016.
Offline discussion on remaining details on RRM measurements
WF on Bandwidth Part for DL common channel
3GPP TSG-RAN WG4 Meeting NR#3 Nagoya, Japan, 18 – 21 Sep, 2017
Way Forward on UE measurement definition and capability
Summary of SLS for RRM NTT DOCOMO
Offline Discussion on remaining details about RACH Procedure
WF on UL Transmission for Difficult Band Combinations in LTE-NR DC
Draft WF on single Tx switched UL
Single Tx switched UL DRAFT 3GPP RAN #77 September , 2017
WF on single switched TX UL
3GPP TSG-RAN WG4 Meeting #84bis
R GPP TSG RAN WG1 Meeting #90 Prague, P.R. Czechia, 21st – 25th August 2017 Agenda: WF.
Initial workplan on NR spectrum
Wayforward on Rel-15 NR Study Items
WF on NPUSCH scrambling for Rel-14 NB-IoT
WF on single switched TX UL
WF on NR spectrum NTT DOCOMO, INC. R
WF on pre-DFT PT-RS pattern for DFTsOFDM
WF on single Tx switched UL
Summary of offline discussion for PDCCH structure
Single Tx switched UL Qualcomm, Intel DRAFT RP GPP RAN #77
WF on Beam Indication for Beam Management
WF on NB-IoT Radio Link Monitoring Performance Test Procedure
Way forward on emissions scaling
Way forward on UE EIS Spherical Coverage and Beam Correspondence
3GPP TSG RAN WG1 Meeting #90bis
R WF on channel raster Nokia,.
R WF on channel raster Nokia,.
WF on remaining open items for allowing 1Tx transmission in LTE-NR DC
Qualcomm Incorporated
Way forward on cell identification in NR
Intel Corporation, Apple
Way forward on DL ACLR&ACS for WP5D LS
Samsung, KT Corp., NTT DOCOMO, Verizon, [ZTE], [CATT], [Intel]
WF on beam reporting CATT, Intel R1-17xxxxx
WF on CSI timing offset for PUSCH
R WF on channel raster Nokia,.
TSG-RAN WG1 Meeting #60bis
WF on Radio Link Monitoring in NR
Vodafone, Agilent, Anite, Azimuth, Bluetest, [Intel], ETS-Lindgren
Motorola Mobility, Lenovo, …
WF on UE mandatory channel bandwidth for NR bands
Evaluation Model for LTE-Advanced
WF for 4Rx CA 256QAM(1/2 layer) and 3/4 layers tests in Rel-14
Way Forward on Coexistence Evaluation Methodologies for LAA
WF on LTE-NR DC with UL coexistence
WF on 4Tx UL Codebook For CP-OFDM
WF on UL Beam Management
WF on UL Beam Management
EXECUTIVE SUMMARY CA combinations are divided into intra-band (contiguous and non-contiguous) and inter-band. Aggregated carriers can be adjacent or non-adjacent.
Scoping Out CA CA(Carrier Aggregation) is a technique used to combine multiple Long ‐ Term Evolution (LTE) component carriers (CCs) across the available.
Antennas Topologies Directly connecting two duplexers together can affect each other’s filter characteristic, thereby losing the isolation that is needed.
LTE-Advanced New UE Categories[4] LTE-Advanced New UE Categories[4]
WF on Phase discontinuity issue in intra-band EN-DC with 1-PA
3GPP RAN3 August meeting on function split analysis
WF on LTE-NR Coexistence
on the overall 5G-NR eMBB workplan
Presentation transcript:

Way Forward Proposals for Inter-band CA Consisting of B41 3GPP TSG-RAN WG4 Meeting #74 Athens, Greece, February 9th – 13th 2015 R4-151188 Way Forward Proposals for Inter-band CA Consisting of B41 MediaTek Inc., Huawei, ..

Background The UE self-desensitization issue for inter-band CA consisting of B41 due to insufficient cross-band isolation was brought up in R4-73AH-0024 [1] and R4-150956 [2] The existing framework for H/H and L/L CA combinations DTib and DRib relaxations [3] also may not be sufficient to address certain CA combination requirements as brought up in R4-73AH-0100 [4] and R4-73AH-0057 [5], where inter-band CA consisting of B41 can be a good example.

CA Combinations Consisting of B41 Simultaneous Tx/Rx CA_39A_41A No CA_41A_42A CA_41A_42C Yes CA_1A_41C CA_26A_41C CA_8A_41C CA_25A_41C CA_3A_41A

Observations for CA with B41 #1: For B41 paired with a TDD band, the desensitization would only occur under simultaneous Tx/Rx operation. #2: For B41 paired with an FDD band, the desensitization may occur when UL is in FDD band, and would only occur under simultaneous Tx/Rx when UL is in B41. #3: For B41 paired with any low band, no additional relaxation is required except when there is harmonic problem. #4: Desensitization level can be around 5 dB for B41 and 1.8 dB for its pairing band according to [2].

Way Forward Proposals The following WF proposals are intended to address the self-desensitization issue for inter-band CA consisting of B41, Proposal 1: RAN4 to study the reference sensitivity degradation for both B41 and its pairing band due to insufficient cross-band isolation based on the available filter (single wideband filter) performance data. Proposal 2: For B41 paired with a high-band or 3.5-GHz band with either B41+FDD or B41+TDD supporting simultaneous Tx/Rx, RAN4 to also study additional DTib and DRib required for B41 on top of the existing framework such that no further reference sensitivity relaxation is needed for both B41 and its paring band. Proposal 3: Based on the analysis results of Proposal 1 and 2, RAN4 to decide how to define the additional requirements on case-by-case basis.

References [1] R4-73AH-0024, “On cross-band isolation of B41+B42+B42 CA UE”, SoftBank Mobile, TSG-RAN WG4 #73AH UE RF Ad Hoc Meeting, Oulu, Finland, January 13th – 16th, 2015 [2] R4-150956, “Way forward proposal for inter-band CA consisting of B41”, MediaTek Inc., TSG-RAN WG4 #74, Athens, Greece, February 9th – 13th, 2015 [3] R4-146833, “Additional framework for Interband CA relaxations”, Nokia Corporation, Telecom Italia, Sprint, Ericsson, TeliaSonera, Orange, Vodafone, TSG-RAN WG4 Meeting #72bis, Singapore, Oct. 6th – Oct. 10th, 2014 [4] R4-73AH-0100, “A closer look at the framework for quadplexed combinations”, Qualcomm Incorporated, TSG-RAN WG4 #73AH UE RF Ad Hoc Meeting, Oulu, Finland, January 13th – 16th, 2015 [5] R4-73AH-0057, “Relaxations of FDD-TDD CA supporting simultaneous Tx/Rx”, MediaTek Inc., TSG-RAN WG4 #73AH UE RF Ad Hoc Meeting, Oulu, Finland, January 13th – 16th, 2015