Submission doc.: IEEE 802.11-15/0808 July 2015 Songnam Hong, EricssonSlide 1 Frequency-independent Digital Precoder for Hybrid MIMO Precoding Date: 2015-07-13.

Slides:



Advertisements
Similar presentations
A Framework for MIMO Operation over mmWave Links
Advertisements

mmWave MIMO Link Budget Estimation for Indoor Environment
Doc.: IEEE /1090/r2 Submission September 2013 Submission Zhanji Wu, et. Al. Non-linear pre-coding MIMO scheme for next generation WLAN Date:
Submission doc.: IEEE /0296r0 March 2015 Cagatay Capar, EricssonSlide 1 Long range indoor channel measurements for the 60 GHz band Date:
Submission doc.: IEEE /1202r0 September 2014 Amichai Sanderovich, QualcommSlide 1 NG60 channel model Date: Authors:
Doc.: IEEE /0630r0 Submission May 2015 Intel CorporationSlide 1 Verification of IEEE ad Channel Model for Enterprise Cubical Environment.
Submission doc.: IEEE / 0431 r0 March 2015 Dmitry Cherniavsky, SiBEAM, Inc.Slide 1 Shared MIMO Architecture for ay. Date: Authors:
Submission doc.: IEEE /0383r0 Impact of number of sub-channels in OFDMA Date: Slide 1Leif Wilhelmsson, Ericsson March 2015 Authors:
Submission doc.: IEEE /1452r0 November 2014 Leif Wilhelmsson, EricssonSlide 1 Frequency selective scheduling in OFDMA Date: Authors:
Submission doc.: IEEE /0809r0 July 2015 Dmitry Cherniavsky, SiBEAM, Inc.Slide 1 Beamforming to Enable Concurrent Links for ay. Date:
Doc.: IEEE /1391r0 Submission Nov Yakun Sun, et. Al.Slide 1 About SINR conversion for PHY Abstraction Date: Authors:
Submission doc.: IEEE 11-12/0844r0 Slide 1 Non-linear Multiuser MIMO for next generation WLAN Date: Authors: Shoichi Kitazawa, ATR.
Phase Tracking During VHT-LTF
Doc.: IEEE /0493r1 Submission May 2010 Changsoon Choi, IHP microelectronicsSlide 1 Beamforming training for IEEE ad Date: Authors:
Doc.: IEEE /0364r1 SubmissionEldad Perahia, Intel CorporationSlide 1 Date: Authors: Antenna Array Gain from Measured Data for n/ac.
Doc.: IEEE /180r0 Submission March 2002 Monisha Ghosh, et al., Philips Slide 1 On The Use Of Multiple Antennae For Monisha Ghosh, Xuemei.
Submission doc.: IEEE /0627r0 May 2015 Hakan Persson, EricssonSlide 1 Beam Selection for Hybrid MIMO Precoding Date: Authors:
Month Year doc.: IEEE yy/xxxxr0 July 2015
Submission doc.: /0929r00 Jim Lansford(CSR), et al Slide 1 Expansion of ac to 6-10GHz Date: Authors: July 2012.
Submission Sep doc.: IEEE XXXXr1 Zhigang Wen,et. al (BUPT)Slide 1 Discussion on Massive MIMO for HEW Date: Authors:
Discussion on MU-MIMO based on Hybrid Beamforming System in ay
Submission doc.: IEEE 11-14/0652r1 Next Generation ad Slide 1 May 2014 Gal/Alecs Wilocity/Qualcomm Authors: NameAffiliationAddressPhone Alecsander.
Doc.:IEEE /0536r0 Submission May 11th, 2009 Slide 1 OBSS issue in ac Authors: Date:
Doc.: IEEE /1011r0 Submission September 2009 Alexander Maltsev, IntelSlide 1 Verification of Polarization Impact Model by Experimental Data Date:
Efficient Beam Selection for Hybrid Beamforming
Doc.: IEEE /0553r1 Submission May 2009 Alexander Maltsev, Intel Corp.Slide 1 Path Loss Model Development for TGad Channel Models Date:
Doc.: IEEE /1401r0 Submission November 2014 Slide 1 Shiwen He , Haiming Wang Quasi-Orthogonal STBC for SC-PHY in IEEE aj (45GHz) Authors/contributors:
Doc.: IEEE /1645r2 Submission January 2005 C. Hansen, BroadcomSlide 1 Preambles, Beamforming, and the WWiSE Proposal Notice: This document has.
Submission September 2015 doc.: IEEE /1091r0 September 2015 Considerations on Range Extension with SIG-A Repetition Date: Authors:
Doc.: IEEE /0493r0 Submission May 2010 Changsoon Choi, IHP microelectronicsSlide 1 Beamforming training for IEEE ad Date: Authors:
Doc.: IEEE /1145r0 Submission September 2015 Intel CorporationSlide 1 SU-MIMO Configurations for IEEE ay Date: Authors:
Submission doc.: IEEE /1094 Overview and discussion about the next steps for ay channel modeling Date: Authors: Slide 1.
Doc.: IEEE hew Submission March 2014 Submission Zhanji Wu, et. Al. Joint Coding and Modulation Diversity with RBD pre-coding MU-MIMO Date:
Doc.: IEEE /1044r0 Submission September 2008 Alexander Maltsev, IntelSlide 1 60 GHz WLAN Experimental Investigations Date: Authors:
Submission doc.: IEEE /1347r0 November 2015 Filippo Tosato, ToshibaSlide 1 Strategies to reduce MIMO feedback overhead Date: Authors:
Doc.: IEEE /0133r0 Submission January 2010 Alexander Maltsev, Intel TGad Channel Model Update Authors: Date:
Submission doc.: IEEE 19-15/0084r0 Nov 2015 Igal Kotzer, General MotorsSlide 1 On The Intra-Vehicle Channel Model Date: 21-Oct-2015 Authors:
Doc.: IEEE /0161r1 Submission doc.: IEEE /1031r0 Measurement results for OBSS in home network scenarios Date: September 2009.
Doc.: IEEE /1229r1 Submission November 2009 Alexander Maltsev, IntelSlide 1 Application of 60 GHz Channel Models for Comparison of TGad Proposals.
Doc.: IEEE /0632r0 Submission May 2015 Intel CorporationSlide 1 Experimental Measurements for Short Range LOS SU-MIMO Date: Authors:
Doc.: IEEE /0632r0 Submission May 2008 Vinko Erceg, BroadcomSlide 1 VHT 60 GHz Channel Model Recommendation Date: Authors:
Doc.: aj Submission November 2014 Slide 1 Shiwen He , Haiming Wang Quasi-Orthogonal STBC for IEEE aj ( 45GHz ) Authors/contributors:
Doc.: IEEE /1321r0 Submission Reducing Explicit MIMO Compressed Beamforming Feedback Overhead for ax November 2015 Slide 1 Date:
Submission doc.: IEEE /0021r1 Janurary 2016 Chen SUN, SonySlide 1 Application scenario and text change proposal for coexistence management considering.
Doc.: IEEE /0176r0 Submission Jan 2013 Bo Sun, ZTE/CWPANSlide 1 Date: Presenter: Proposal of Channelization for aj.
11ay MIMO BF Training Enhancements
Interdigital Communications Submission doc.: IEEE /1333r1 November 2015 Feasibility of SU-MIMO under Array Alignment Method Date: Slide.
InterDigital, Inc. Submission doc.: IEEE /0911r1 July 2016 Link Level Performance Comparisons of Open Loop, Closed Loop and Antenna Selection.
Doc.: IEEE /1209r0 Submission Hotel lobby SU-MIMO channel modeling: 2x2 golden set generation Date: September 2016 Alexander Maltsev,
Submission doc.: IEEE /0316r0 Low Complexity Beamtraining for Hybrid MIMO Date: Slide 1 March 2016 Authors: Dana Ciochina (SONY), Felix.
Beam Tracking for ay Date: Authors: January 2017
Closed Loop SU-MIMO Performance with Quantized Feedback
Open Loop vs Closed Loop SU-MIMO for 11ay
Antenna selection and RF processing for MIMO systems
Further Discussion on Beam Tracking for ay
Hybrid Beamforming Protocol Design Details
Protocols for Hybrid Beamforming in ay
Analog and Baseband Beam Tracking in ay
MIMO-OFDM with antenna selection
Coherence Time Measurement in NTT Lab.
Further Discussion on Beam Tracking for ay
Multi-band Modulation, Coding, and Medium Access Control
Hybrid Beamforming Protocol Design Details
Update on “Channel Models for 60 GHz WLAN Systems” Document
Protocols for Hybrid Beamforming in ay
Nulling and coordinated beamforming
STBC in Single Carrier(SC) for IEEE aj (45GHz)
Nulling and coordinated beamforming
Channel Modeling with PAA Orientations
Measurements for Distributed-MU-MIMO
Presentation transcript:

Submission doc.: IEEE /0808 July 2015 Songnam Hong, EricssonSlide 1 Frequency-independent Digital Precoder for Hybrid MIMO Precoding Date: Authors:

Submission doc.: IEEE /0808 Abstract In hybrid beamforming [1], precoding is performed two stages: Digital (baseband) precoding and Analog (RF) precoding Typically, the same analog precoder is used for all subcarriers (Frequency-independent). On the other hand, the optimal digital precoder can be selected for each subcarrier, yielding the best performance [2]; however it requires extensive feedback. In this presentation, we investigate how suboptimal choices (with reduced feedback) affect the performance. Slide 2Songnam Hong, Ericsson July 2015

Submission doc.: IEEE /0808 Hybrid Beamforming Slide 3Songnam Hong, Ericsson July 2015 BB RF BB RF s

Submission doc.: IEEE /0808 Hybrid Beamforming Slide 4Songnam Hong, Ericsson July 2015 BB RF BB RF s

Submission doc.: IEEE /0808 Optimizing the Digital Precoders Slide 5Songnam Hong, Ericsson July 2015

Submission doc.: IEEE /0808 Optimal Digital Precoder Slide 6Songnam Hong, Ericsson May 2015

Submission doc.: IEEE /0808 Frequency-independent Digital Precoder Slide 7Songnam Hong, Ericsson May 2015

Submission doc.: IEEE /0808 Frequency-independent Digital Precoder Slide 8Songnam Hong, Ericsson May 2015

Submission doc.: IEEE /0808 Rx Simulation Details Slide 9Songnam Hong, Ericsson July 2015 Receiver fixed at one location. Several transmitter locations tested. Both transmitter and receiver have two antenna arrays  2x2 MIMO. Antenna arrays are 1x8 linear arrays. For each transmitter location, full channel matrix (16x16) is generated by ray tracing. Studio apartment room plan: Tx

Submission doc.: IEEE /0808 Simulation Details Slide 10Songnam Hong, Ericsson July 2015 For each location, two rate values are calculated: Rates achieved with solving Optimization Problem 1 and 2 (frequency-dependent and frequency- independent digital precoder). Results are generated for varying total transmit power values. Studio apartment room plan: Rx Tx

Submission doc.: IEEE /0808 Simulation Results Slide 11Songnam Hong, Ericsson July

Submission doc.: IEEE /0808 Simulation Results Slide 12Songnam Hong, Ericsson July In all locations, the loss is minimal: a single digital precoder performs very close to an optimized digital precoder per subcarrier. This is mostly due to the frequency selectivity of the channel being low enough so that power allocation across subcarriers is not crucial. In Open-loop MIMO (no precoding at Tx), we observed that there is a performance loss (about 0.5 bits/subcarrier).

Submission doc.: IEEE /0808 Summary and Conclusions Slide 13Songnam Hong, Ericsson July 2015 We studied the design of the digital precoder for hybrid beamforming in 11ay. For a simple studio apartment room scenario, we have noticed minimal performance loss when all subcarriers use the same digital precoder that is optimized using the method in [3]. The performance gap might be larger when frequency selectivity of the channel is higher (for example, shopping mall scenario).

Submission doc.: IEEE /0808July 2015 Songnam Hong, EricssonSlide 14 References /0606r0, “Next Generation ad: 30+ Gbps WLAN” /0627r0, “Beam Selection for Hybrid MIMO Precoding” 3.A. Tulino, A. Lozano, and S. Verdu, “Capacity-achieving input covariance for single-user multi-antenna channels,” IEEE Transactions on Wireless Communications, vol. 5, no. 3, pp , March /0334r8, “Channel Models for 60 GHz WLAN Systems”