Doc.: IEEE 11-14-0345-01-0hew Submission March 2014 Submission Zhanji Wu, et. Al. Joint Coding and Modulation Diversity with RBD pre-coding MU-MIMO Date:

Slides:



Advertisements
Similar presentations
Feedback Reliability Calculation for an Iterative Block Decision Feedback Equalizer (IB-DFE) Gillian Huang, Andrew Nix and Simon Armour Centre for Communications.
Advertisements

Co-time Co-frequency Full Duplex for WLAN
Submission Joint Coding and Modulation Diversity with LRA MMSE VP by QR precoding MIMO Slide 1 May 2014 Ningbo Zhang, Guixia Kang and Ruyue Dong Doc.:
Non-linear pre-coding for next generation WLAN
VSMC MIMO: A Spectral Efficient Scheme for Cooperative Relay in Cognitive Radio Networks 1.
MIMO Communication Systems
Doc.: IEEE /1090/r2 Submission September 2013 Submission Zhanji Wu, et. Al. Non-linear pre-coding MIMO scheme for next generation WLAN Date:
The Impact of Channel Estimation Errors on Space-Time Block Codes Presentation for Virginia Tech Symposium on Wireless Personal Communications M. C. Valenti.
Doc.: IEEE /1157r3 SubmissionYunzhou Li, Tsinghua Univ.Slide 1 Feasibility of Coordinated Transmission for HEW Date: Authors: September.
Doc.: IEEE /0064r0 Submission Shogo Fujita, Kyushu Inst. Of Tech. Slide 1 Modulo Precoding for 11ac Date: Authors: January 2011.
EE360: Lecture 13 Outline Cognitive Radios and their Capacity Announcements March 5 lecture moved to March 7, 12-1:15pm, Packard 364 Poster session scheduling.
10 th MCM - Novi Sad, March 2006 Joaquim Bastos ( ) 1 The information in this document is provided as is and no guarantee or warranty.
RAKE Receiver Marcel Bautista February 12, Propagation of Tx Signal.
Doc.:IEEE /0206r0 Submission January 2015 Shiwen He, Haiming Wang Pilot Design for OFDM PHY for aj(45 GHz) Authors/contributors: Date:
Submission doc.: IEEE /0097r0 Slide 1 Performance Analysis of Frequency Selective Scheduling Date: Authors: Ningbo Zhang, BUPT January.
MIMO-OFDM MIMO MIMO High diversity gain (space-time coding) High diversity gain (space-time coding) High multiplexing gain (BLAST) High multiplexing gain.
Submission doc.: IEEE /0808 July 2015 Songnam Hong, EricssonSlide 1 Frequency-independent Digital Precoder for Hybrid MIMO Precoding Date:
Doc.: IEEE /1536r1 Zhanji Wu, et. Al. November 2011 Submission Joint Coding and Modulation Diversity for ah Date: Authors: Slide1.
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
Cooperative Diversity Scheme Based on MIMO-OFDM in Small Cell Network Dong-Hyun Ha Sejong University.
On the Coded Complex Field Network Coding Scheme for Multiuser Cooperative Communications with Regenerative Relays Caixi Key Lab of Information.
Orthogonal Frequency Division Multiple Access (OFDMA)
Doc.: IEEE /0493r1 Submission May 2010 Changsoon Choi, IHP microelectronicsSlide 1 Beamforming training for IEEE ad Date: Authors:
Doc.: IEEE /180r0 Submission March 2002 Monisha Ghosh, et al., Philips Slide 1 On The Use Of Multiple Antennae For Monisha Ghosh, Xuemei.
Doc.: IEEE /0035r1 Submission Jan Heejung Yu, ETRISlide 1 Coverage extetion for IEEE802.11ah Date: Authors:
Ali Al-Saihati ID# Ghassan Linjawi
Submission Sep doc.: IEEE XXXXr1 Zhigang Wen,et. al (BUPT)Slide 1 Discussion on Massive MIMO for HEW Date: Authors:
Doc.: IEEE Submission, Slide 1 Project: IEEE P Working Group for Wireless Personal Area Networks (WPANs) Submission Title: [The Usage of.
Space-Time and Space-Frequency Coded Orthogonal Frequency Division Multiplexing Transmitter Diversity Techniques King F. Lee.
Efficient Beam Selection for Hybrid Beamforming
Submission doc.: IEEE /1088r0 September 2015 Daewon Lee, NewracomSlide 1 LTF Design for Uplink MU-MIMO Date: Authors:
Doc.: IEEE /663r3 Submission May 2012 Zhanji Wu, et. Al.Slide 1 Low-rate compatible BCC for IEEE ah lowest MCS Date: Authors:
Doc.: IEEE /0493r0 Submission May 2010 Changsoon Choi, IHP microelectronicsSlide 1 Beamforming training for IEEE ad Date: Authors:
Doc.: IEEE /0383r0 Submission Considerations on evaluation methodology for candidate HEW PHY&MAC techniques Date: March 2014 Le Liu, et.
Doc.: IEEE /0112r0 Zhanji Wu, et. Al. January 2013 Submission Joint Coding and Modulation Diversity for the Next Generation WLAN Date:
Doc.: IEEE /1145r0 Submission September 2015 Intel CorporationSlide 1 SU-MIMO Configurations for IEEE ay Date: Authors:
Submission doc.: IEEE /1347r0 November 2015 Filippo Tosato, ToshibaSlide 1 Strategies to reduce MIMO feedback overhead Date: Authors:
Doc.: IEEE /1390r0 Submission Nov Yakun Sun, et. Al.Slide 1 PHY Abstraction for HEW System Level Simulation Date: Authors:
Doc.: IEEE /xxxx SubmissionSlide 1 Summary and Discussions of Proposals on Potential PHY Technologies in HEW Date: Authors: Jianhan.
Doc.: IEEE /0779r0 Submission Guixia Kang, BUPT July 2010 VHT-LTF Design for IEEE802.11ac Slide 1 Date: Authors:
EE360: Lecture 13 Outline Capacity of Cognitive Radios Announcements Progress reports due Feb. 29 at midnight Overview Achievable rates in Cognitive Radios.
Doc.: IEEE /0161r1 Submission doc.: IEEE /0806r0 K. Ishihara et al.,(NTT) Slide 1 July 2010 Slide 1 CSI Feedback Scheme using DCT for.
InterDigital, Inc. Submission doc.: IEEE /0911r1 July 2016 Link Level Performance Comparisons of Open Loop, Closed Loop and Antenna Selection.
Low-Complexity Recursive Convolutional Precoding for OFDM-based Large-Scale Antenna Systems Yinsheng Liu, Beijing Jiaotong University, China Geoffrey Ye.
A REVIEW: PERFORMANCE ANALYSIS OF MIMO-WiMAX AKANKSHA SHARMA, LAVISH KANSAL PRESENTED BY:- AKANKSHA SHARMA Lovely Professional University.
Space Time Codes.
Space-Time and Space-Frequency Coded Orthogonal Frequency Division Multiplexing Transmitter Diversity Techniques King F. Lee.
Further Rotation Modulation Application
Closed Loop SU-MIMO Performance with Quantized Feedback
Discussions on 11ac PHY Efficiency
Yinsheng Liu, Beijing Jiaotong University, China
Small-Scale Characteristics of 45 GHz Based on Channel Measurement
6-10GHz Rate-Range and Link Budget
Discussions on 11ac PHY Efficiency
Project: IEEE P Working Group for Wireless Personal Area Networks (WPANs) Submission Title: [The Usage of Polarized Antenna System] Date.
Discussions on 11ac PHY Efficiency
Discussions on 11ac PHY Efficiency
Feasibility of Coordinated Transmission for HEW
Optimal Combining of STBC and Spatial Multiplexing for MIMO-OFDM
MIMO (Multiple Input Multiple Output)
Joint Coding and Modulation Diversity for ac
Rotation Modulation Application to ac system
CSI Feedback Scheme using DCT for Explicit Beamforming
STBC in Single Carrier(SC) for IEEE aj (45GHz)
Joint Coding and Modulation Diversity for ah
Strawmodel ac Specification Framework
Joint Coding and Modulation Diversity with RBD pre-coding MU-MIMO
Feasibility of Coordinated Transmission for HEW
Presentation transcript:

doc.: IEEE hew Submission March 2014 Submission Zhanji Wu, et. Al. Joint Coding and Modulation Diversity with RBD pre-coding MU-MIMO Date: Authors: NameAffiliationsAddressPhone Zhanji Wu Beijing University of Post and Telecommunicati on (BUPT) Xitucheng Road 10, Haidian District, Beijing, China Yongtao Xiang Yunzhou Li Tsinghua University Tsinghua Rd. Beijng, China cn Wu Bin Institute of Microelectronics of the Chinese Academy of Sciences (IMECAS) Beitucheng West Road, 9,Chaoyang District, Beijing, China

doc.: IEEE hew Submission March 2014 Zhanji Wu, et. Al. Outline This contribution proposes an improved MIMO-OFDM scheme based on Joint Coding and Modulation Diversity (JCMD)[2] together with Regularized Block Diagonalization (RBD)[1] precoding multiuser (MU) MIMO to achieve better system performance. For target FER=0.01, JCMD with RBD obtains 3dB gain than BICM with RBD, and JCMD with RBD obtains 1.8dB gain than JCMD with BD.

doc.: IEEE hew Submission March 2014 Introduction Higher demand for future WLAN[3] : –Higher throughput and data rates. –Greater reliability. –increased number of mobile devices The combination of OFDM and MIMO is still a key feature for high-throughput transmission in the next generation WLAN. In order to enhance the system performance, we propose a JCMD scheme with RBD-Precoding MU-MIMO as the key PHY layer technology for the next-generation WLAN. Zhanji Wu, et. Al.

doc.: IEEE hew Submission March 2014 Zhanji Wu, et. Al. BD pre-coding Low computational complexity. Eliminate the interference of other users. Ignore the noise. Number of transmit antennas of a BS should be equal or greater than total number of all users’ receive antennas. RBD pre-coding Higher system performance than BD Pre-coding. Increased computational complexity compared to BD Pre-coding. The RBD pre-coding decreases the noise while eliminating the interference of other users. No Tx/Rx antenna limitation[4] Pre-coding strategy

doc.: IEEE hew Submission March 2014 Zhanji Wu, et. Al. Joint Coding and Modulation Diversity JCMD scheme jointly optimizes the MIMO-OFDM, channel coding and modulation together, which makes full use of time, frequency and space diversity. –Rotational modulation –Q-components interleaver

doc.: IEEE hew Submission March 2014 Zhanji Wu, et. Al. Proposed Transmitter/Receiver Block Diagram NOTES –The blocks drawn in dotted line are our proposed additional processing on the basis of the current ac standard scheme. –In simulations, the spatial mapping method MU MIMO are BD/RBD precoding, respectively.

doc.: IEEE hew Submission March 2014 Zhanji Wu, et. Al. RBD-Precoding Regularized Block Diagonalization (RBD) Pre-coding is a two step process. The first step is to suppress the multi-user interference,and the second step is to optimize system performance. In the second step,the communication between BS and users can be seen as SU-MIMO. The matrix of precoding can be expressed as Where, Fa is used to suppress the multi-user interference and the noise, and then multiple-user MIMO channel is converted into a set of parallel single-user MIMO channel. Fb is used to optimize system performance.

doc.: IEEE hew Submission March 2014 Zhanji Wu, et. Al. RBD-Precoding The process of RBD Precoding can be expressed as follows: The first step : suppress the multi-user interference For the i-th user,we define as the combination channel of all users except the i-th user. The equivalent combined channel matrix of all users after the first step is equal to where the i-th user’s effective channel is given by the interference generated to the other users is determined by

doc.: IEEE hew Submission March 2014 Zhanji Wu, et. Al. RBD-Precoding Optimization criterion : where vector n contains the samples of a zero mean additive white Gaussian noise at the input of the receive antennas. We try to minimize both the interference to other users, and the noise impact on the system. We can get,where After the first step,we can now apply any other previously defined SU MIMO technique on the i- th user’s equivalent channel matrix. The second step : Where

doc.: IEEE hew Submission March 2014 Zhanji Wu, et. Al. Simulation Parameters for ac MU-MIMO Scheme ParametersValues User number2 The number of antennas at TX4 The number of antennas at RX per user2 Bandwidth20 MHz Code typeBCC/LDPC Channel model802.11ac channel model MCSsMCS4 Sub-carrier spacing312.5 kHz PrecodingBD/RBD Channel estimationPerfect CSI

doc.: IEEE hew Submission March 2014 FER performance for MU-MIMO scheme in JCMD/BICM with RBD/BD Pre-coding(BCC Coding) For FER=0.01 Compare JCMD with BICM: JCMD with RBD obtains 3.01dB gain than BICM with RBD. JCMD with BD obtains 2.23dB gain than BICM with BD. Compare RBD Pre-coding with BD Pre-coding : BICM with RBD obtains 1.17dB gain than BICM with BD. JCMD with RBD obtains 1.85dB gain than JCMD with BD. For FER=0.01, the corresponding Eb/No (dB) of JCMD/BICM with RBD/BD Pre- coding is : RBDBD JCMD BICM

doc.: IEEE hew Submission March 2014 FER performance for MU-MIMO scheme in JCMD/BICM with RBD/BD Pre-coding(LDPC Coding) For FER=0.01 Compare JCMD with BICM: JCMD with RBD obtains 2.79dB gain than BICM with RBD. JCMD with BD obtains 2.22dB gain than BICM with BD Compare RBD Pre-coding with BD Pre-coding : BICM with RBD obtains 1.28dB gain than BICM with BD JCMD with RBD obtains 1.86dB gain than JCMD with BD For FER=0.01, the Corresponding Eb/No (dB) of JCMD/BICM with RBD/BD Pre- coding is : RBDBD JCMD BICM

doc.: IEEE hew Submission March 2014 Submission Summary An improved Joint Coding and Modulation Diversity (JCMD) with Regularized Block Diagonalization (RBD) precoding multiuser (MU) MIMO is proposed. For target FER=0.01, JCMD with RBD obtains 3dB gain than BICM with RBD , and JCMD with RBD obtains 1.8dB gain than JCMD with BD. JCMD with RBD-precoding MU-MIMO is simple, reliable and efficient for the HEW requirement. Zhanji Wu, et. Al.

doc.: IEEE hew Submission March 2014 Submission Reference [1] R.F.H Fischer, Precoding and Signal Shaping for Digital Transmission. New York: Wiley, 2002 [2] ac-joint-coding-and-modulation-diversity-to ac.ppt [3] hew-Non-linear pre-coding for next generation WLAN [4] 3GPP TR Technical Specification Group Radio Access Network; Spatial channel model for Multiple Input Multiple Output (MIMO) simulations Zhanji Wu, et. Al.