Submission doc.: IEEE 11-14/0598r0 Slide 1Tran Thi Thao Nguyen, Kyushu Institute of Technology May 2014 Uplink multi-user MAC protocol for 11ax Authors:

Slides:



Advertisements
Similar presentations
Doc.: IEEE /0410r2 Submission March 2011 Slide 1 Data Transmission Protection on the IEEE ac MU-MIMO Downlink Date: Authors:
Advertisements

Submission doc.: IEEE 11-14/0802r0 Consideration on UL MU transmission Date: Slide 1Jinyoung Chun et. al, LG Electronics July 2014 Authors:
PS-Poll TXOP Using RTS/CTS Protection
Doc.: IEEE /0324r0 Submission Slide 1Michelle Gong, Intel March 2010 DL MU MIMO Error Handling and Simulation Results Date: Authors:
Doc.: IEEE /0567r0 Submission Slide 1Michelle Gong, Intel May 2010 DL MU MIMO Analysis and OBSS Simulation Results Date: Authors:
Doc.: IEEE /1123r0 Submission September 2010 Zhu/Kim et al 1 Date: Authors: [TXOP Sharing for DL MU-MIMO Support]
Doc.: IEEE /1244r1 Submission Nov.2010 Sun Bo, ZTE CorpSlide 1 Authors: Transmission Mechanism in MU-MIMO Date:
Discussion on OFDMA in HEW
Doc.: IEEE /1190r2 September 2014 Submission Kaiying Lv (ZTE) Frame Exchange Control for Uplink Multi-user transmission Slide 1 Date:
Doc.: IEEE /0871r0 Submission Jul 2013 Timo Koskela, Renesas Mobile CorporationSlide 1 Discussion on Potential Techniques for HEW Date:
– Wireless PHY and MAC Stallings Types of Infrared FHSS (frequency hopping spread spectrum) DSSS (direct sequence.
Submission doc.: IEEE /0091r1 January 2015 Woojin Ahn, Yonsei UniversitySlide 1 UL-OFDMA procedure in IEEE ax Date: Authors:
Submission doc.: IEEE /0377r0 Slide 1Leonardo Lanante, Kyushu Inst. of Tech. March 2015 Considerations on UL MU resource scheduling Authors: NameAffiliationsAddressPhone .
Comp 361, Spring 20056:Basic Wireless 1 Chapter 6: Basic Wireless (last updated 02/05/05) r A quick intro to CDMA r Basic
Submission doc.: IEEE /1225r1 Considerations on CCA for OBSS Opearation in ax Date: Slide 1Huawei Authors:
Beamformed HE PPDU Date: Authors: May 2015 Month Year
Submission doc.: IEEE /0091r0 January 2015 Woojin Ahn, Yonsei Univ.Slide 1 UL-OFDMA procedure in IEEE ax Date: Authors:
Submission doc.: IEEE /0376r0 Slide 1Tatsumi Uwai, Radrix co. ltd March 2015 UL-MU MAC Throughput under Non-Full Buffer Traffic Authors: NameAffiliationsAddressPhone .
Submission doc.: IEEE /0333r0 March 2015 Oghenekome Oteri (InterDigital)Slide 1 Throughput Comparison of Some Multi-user Schemes in ax Date:
Wireless Networking So we talked about wired networks. What about wireless?
Submission doc.: IEEE /1454r1 November 2014 Jarkko Kneckt (Nokia)Slide ax Power Save Discussion Date: Authors:
Doc.: IEEE /1431r1 Submission September 2014 Issues on UL-OFDMA Transmission Date: Authors: Slide 1.
Submission doc.: IEEE /0089r1 January 2015 Leonardo Lanante, Kyushu Inst. of Tech.Slide 1 MAC Efficiency Gain of Uplink Multi-user Transmission.
Uplink Multi-User MIMO Protocol Design
Discussion on OFDMA in IEEE ax
Submission doc.: IEEE /1452r0 November 2014 Leif Wilhelmsson, EricssonSlide 1 Frequency selective scheduling in OFDMA Date: Authors:
Submission doc.: IEEE /1208r1 September 2014 Jinsoo Ahn, Yonsei UniversitySlide 1 MAC considerations on ax OFDMA Date: Authors:
Submission doc.: IEEE /1454r0 November 2014 Jarkko Kneckt (Nokia)Slide ax Power Save Discussion Date: Authors:
MAC Protocol By Ervin Kulenica & Chien Pham.
Doc.: IEEE /1126r0 Submission September 2012 Krishna Sayana, SamsungSlide 1 Wi-Fi for Hotspot Deployments and Cellular Offload Date:
September 2013 doc.: IEEE 11-13/1105r0 Submission Meng Yang (CATR) Discussion on Access Mechanism for HEW Date: Authors: NameAffiliationsAddressPhone .
IEEE Wireless LAN Standard. Medium Access Control-CSMA/CA IEEE defines two MAC sublayers Distributed coordination function (DCF) Point coordination.
Hybrid OFDMA/CSMA Based Medium Access Control for Next- Generation Wireless LANs Yaser Pourmohammadi Fallah, Salman Khan, Panos Nasiopoulos, Hussein Alnuweiri.
OFDM-IDMA Uplink Communication
Submission doc.: IEEE 11-13/1395r2 Simultaneous Transmission Technologies for HEW Date: November 2013 Koichi Ishihara, NTTSlide 1.
Submission doc.: IEEE /1097r1 September 2015 Narendar Madhavan, ToshibaSlide 1 Reducing Channel Sounding Protocol Overhead for 11ax Date:
Submission doc.: IEEE /1265r1 November 2015 Slide 1 RTS*/CTS* for UL/DL OFDMA Control Date: Authors: NameAffiliationAddressPhone .
Doc.: IEEE /0877r0 Submission July 2013 James Wang (MediaTek)Slide 1 HEW Beamforming Enhancements Date: Authors:
Doc.: IEEE /0843r1 July 2015 Submission(ZTE) UL MU Random Access Analysis Date: Slide 1 Authors: NameAffiliationAddress Yonggang.
Submission doc.: IEEE /0615r0 May 2012 Sudheer Grandhi, InterDigital CommunicationsSlide 1 Considerations for early NAV indication Date:
January ay Frequency Multiple Access in 11ay Date: Slide 1LG Authors:
January 2016 doc.: IEEE /0095r1 Frequency Multiple Access in 11ay Date: Slide 1LG Authors:
Doc.: IEEE /0066r0 Submission January 2015 Yongho Seok, NEWRACOM Downlink OFDMA Protocol Design Date: Authors: Slide 1.
Doc.: IEEE /1086r0 SubmissionSlide 1 Date: Authors: Improved Virtual Carrier Sensing Mechanism for 45GHz Sep ZTE Corp.
Distributed-Queue Access for Wireless Ad Hoc Networks Authors: V. Baiamonte, C. Casetti, C.-F. Chiasserini Dipartimento di Elettronica, Politecnico di.
Doc.: IEEE /0806r0 SubmissionSlide 1Young Hoon Kwon, Newracom Protection for MU Transmission Date: Authors: July 2015.
Submission doc.: IEEE /0376r2 Slide 1Tatsumi Uwai, Radrix co. ltd March 2015 UL-MU MAC Throughput under Non-Full Buffer Traffic Authors: NameAffiliationsAddressPhone .
Submission doc.: IEEE /0407r1 March 2012 Sudheer Grandhi, InterDigital CommunicationsSlide 1 Considerations for PSMP Enhancements Date:
Doc.: IEEE /0787r1 Submission MU with Frequency Domain Multiplexing July 2010 ChaoChun Wang et al, MediaTekSlide 1 Authors:
Doc.: IEEE /1034r0 Submission September 2015 Yongho Seok, NEWRACOM Notification of Operating Mode Changes Date: Authors: Slide 1.
DL-OFDMA Procedure in IEEE ax
Multi-STA BA Design Date: Authors: March 2016 Month Year
Location Measurement Protocol for Unassociated STAs
Polling for MU Measurements
Comparisons of Simultaneous Downlink Transmissions
Frame Exchange Control for Uplink Multi-user transmission
ACK Protection Schemes for the IEEE ac MU-MIMO Downlink
DL MU-MIMO ack protocol
Considerations for WUR Response
DL MU MIMO Error Handling and Simulation Results
MU with Frequency Domain Multiplexing
Explanations for CR on NDP feedback report
ACK Protection Schemes for the IEEE ac MU-MIMO Downlink
UL MU Random Access Analysis
Random Access UL MU Resource Allocation and Indication
AP Coordination in EHT Date: Authors: Name Affiliations
Error Recovery Scheme for Scheduled Ack
MAC Efficiency Gain of Uplink Multi-user Transmission
HE NDP Frame for Sounding
LC MAC submission – follow up
Presentation transcript:

Submission doc.: IEEE 11-14/0598r0 Slide 1Tran Thi Thao Nguyen, Kyushu Institute of Technology May 2014 Uplink multi-user MAC protocol for 11ax Authors: Name AffiliationsAddressPhone Tran Thi Thao NguyenKyushu Institute of Technology 〒 Kawazu 680-4, Iizuka City, Fukuoka Japan Leonardo LananteKyushu Institute of Technology 〒 Kawazu 680-4, Iizuka City, Fukuoka Japan Hiroshi OchiKyushu Institute of Technology 〒 Kawazu 680-4, Iizuka City, Fukuoka Japan Tatsumi UwaiRadrix co.ltd 〒 Incubation Facilities, Kawazu 680-4, Iizuka City, Fukuoka Japan Yuhei NagaoRadrix co.ltd 〒 Incubation Facilities, Kawazu 680-4, Iizuka City, Fukuoka Japan Date:

Submission doc.: IEEE 11-14/0598r0 Abstract ●The support for Uplink multi-user (UL MU) for ax is currently unclear. ●However, numerous studies have shown the benefit UL MU schemes in high-density environments. ●This presentation aims to start the discussion to formally support UL MU in ax. ●We also present a simple UL MU MAC Protocol to support our objective. Slide 2Tran Thi Thao Nguyen, Kyushu Institute of Technology May 2014

Submission doc.: IEEE 11-14/0598r0 Background ●In a highly dense Wireless LAN environment, many collisions occur reducing the total network throughput and possibly lead to congestive collapse. Slide 3Tran Thi Thao Nguyen, Kyushu Institute of Technology May 2014 Collision Figure 1: Multi-user transmit their data to AP at the same time[1]

Submission doc.: IEEE 11-14/0598r0 Background ●Uplink Multi-user transmission reduces collision and hence the total throughput by allowing multiple transmission in a single TXOP. Multi-user transmission can be done in the frequency or spatial domain. Slide 4Tran Thi Thao Nguyen, Kyushu Institute of Technology May 2014 Figure 2: Benefit of UL MU (OFDMA) in frequency domain [2] This figure is the result of combination of the OFDMA access and a CSMA scheme to improve efficiency. By adjusting the number of sub-channels, as the number of stations grows  maintain a higher throughput than CSMA/CA based schemes. M: Number of subchannels Hybrid: OFDMA/CSMA

Submission doc.: IEEE 11-14/0598r0 Uplink Multi-user Transmission Slide 5Tran Thi Thao Nguyen, Kyushu Institute of Technology May 2014 Definition  Users transmit their data to an AP at the same time. [3] TypeApplication Frequency Domain Multiplexing (FDM) OFDMA in a channel or in multiple channels such as LTE or WiMAX Spatial Domain Multiplexing (SDM) UL MU MIMO such as LTE Code Domain Multiplexing (CDM) UL feedback in cellular network such as 3G cellular E.g. IDMA, CDMA Hybrid Multiplexing E.g. Multicarrier-CDMA, OFDM- IDMA Type of uplink multi-user transmission

Submission doc.: IEEE 11-14/0598r0 UL MU MAC Protocol ●The benefit of UL MU can be easily demonstrated by the figure below ●However, the benefit of this scenario is limited because it is highly dependent on the transmitted DL frame. Slide 6Tran Thi Thao Nguyen, Kyushu Institute of Technology May 2014 Figure 3a: UL MUFigure 3b: Conventional Time AP DIFS+Backoff UL ACK User1 User2 User3 User4 UL ACK SIFS DL MU frame AP DIFS+Backoff UL ACK User1 User2 User3 User4 UL ACK SIFS DL MU frame

Submission doc.: IEEE 11-14/0598r0 UL MU MAC Protocol for general case Slide 7Tran Thi Thao Nguyen, Kyushu Institute of Technology May 2014 Figure 4: An example of stand-alone UL data frame Data transmission opportunities are signaled by the AP. AP schedules UL MU Traffic UL MU Transmission STA inform the AP of transmission intent via a short request packet - Many UL MU MAC protocol in literature follows this protocol [2][3] - In this protocol, the sequence is initiated by the AP similar to a point coordinator in PCF. -We refer to this as centralized UL MU AP SIFS Resource request Time DIFS+Backoff UL MU Frame User1 User2 User3 User4 UL MU Frame SIFS Sync UL resource Scheduling info SIFS Resource request

Submission doc.: IEEE 11-14/0598r0 Our ideas A UL MU MAC Protocol should be Applicable to many scenarios to maximize its effect. Initiated by a participating STA and not the AP. Users that obtain TXOP should be able to send right away regardless of UL MU is used or not. If UL MU is used, users with TXOP don’t have to wait for UL transmission timing. It means each users can initiate UL MU data frame transmission without any control from AP. We call this kind of protocol as Distributed UL MU.  In contrast, in the case of Centralized UL MU protocol, frame transmission timing is always come from the AP. Minimal overhead Applicable in DCF/EDCA. Slide 8Tran Thi Thao Nguyen, Kyushu Institute of Technology May 2014

Submission doc.: IEEE 11-14/0598r0 Environment scenario Slide 9Tran Thi Thao Nguyen, Kyushu Institute of Technology May 2014 User1 User2 User3 User4 User5 User6 User7 11ax Users supporting UL MU belonging to Group 1 11ax Users supporting UL MU belonging to Group 2 Legacy device AP User1 User3 User2 User5 User4 User6 User7 Group 2 Group1 BSS Figure 5: Environment scenario Grouping concept here is the same as 11ac DL MU-MIMO grouping.

Submission doc.: IEEE 11-14/0598r0 Slide 10Tran Thi Thao Nguyen, Kyushu Institute of Technology May 2014 RTS AP User1 User3 User2 User5 User4 User6 User7 Group 2 Group1 BSS G CTS AP User1 User3 User2 User5 User4 User6 User7 Group 2 Group1 BSS UL MU Frame AP User1 User3 User2 User5 User4 User6 User7 Group 2 Group1 BSS G ACK Figure 6a: RTS and Group- CTS exchange Figure 6b: UL MU Frame transmission Figure 6c: Group- ACK transmission Distributed UL MU frame transmission (Example) Scenario 1 : UL MU permitted - Transmission sequence -

Submission doc.: IEEE 11-14/0598r0 Distributed UL MU frame transmission (Example) Slide 11Tran Thi Thao Nguyen, Kyushu Institute of Technology May 2014 CTS frame with Group ID for UL ACK frame with Group ID for UL MU Frame Figure 7: An example of Distributed UL MU frame transmission G CTS G ACK Group 1GID1 AP SIFS DIFS+Backoff SIFS RTS G CTS SIFS G ACK DIFS+Backoff UL MU Frame GID1 User1 GID1 User2 GID1 User3 UL MU Frame Time ・・・・・・ Scenario 1 : UL MU permitted - Timing Diagram -

Submission doc.: IEEE 11-14/0598r0 Slide 12Tran Thi Thao Nguyen, Kyushu Institute of Technology May 2014 AP User1 User3 User2 User5 User4 User6 User7 Group 2 Group1 BSS AP User1 User3 User2 User5 User4 User6 User7 Group 2 Group1 BSS AP User1 User3 User2 User5 User4 User6 User7 Group 2 Group1 BSS Figure 8a: RTS and CTS exchange Figure 8b: UL Frame transmission Figure 8c: ACK transmission Distributed UL MU frame transmission (Example) Scenario 2 : UL MU not permitted - Transmission sequence - RTS CTS UL Frame ACK

Submission doc.: IEEE 11-14/0598r0 When any legacy device use RTS, the 11ax AP will always send normal CTS for backward compatibility. Hence, a normal RTS/CTS frame exchange will occur. When any legacy device hear a distributed UL MU sequence, it will be as if a normal RTS/CTS frame exchange has occurred. Slide 13Tran Thi Thao Nguyen, Kyushu Institute of Technology May 2014 Distributed UL MU frame transmission (Example) Backward compatibility

Submission doc.: IEEE 11-14/0598r0 Summary CentralizedDistributed Advantages -“Guarantees” latency. -Might have better theoretical performance benefit than distributed. -Low overhead -Symmetric with current ac DL MU scheme. Disadvantages -High overhead -Neighbor BSSes operating in the same mode will hinder performance. -Effect is dependent on whether users within the same group have the same traffic characteristics. Slide 14Tran Thi Thao Nguyen, Kyushu Institute of Technology May 2014

Submission doc.: IEEE 11-14/0598r0 New frame type definition Slide 15Tran Thi Thao Nguyen, Kyushu Institute of Technology May 2014 The function same as 11ac CTS or ACK, but is for a Group. G CTS frame ( Same control frame Subtype as CTS) Duration Frame Control FCS RADurationRA Duration Frame Control FCS RADuration Group- ACK Bitmap RA G ACK frame FCS New control frame Subtype Duration Indication of group ID Predefine pattern b6 – b47 Used to differentiate between CTS and G CTS b0 - b5

Submission doc.: IEEE 11-14/0598r0 Conclusion and Future Work  We show a UL MU MAC Protocol which has low overhead and easily applicable in frequency domain or spatial domain UL MU.  We plan to show MAC simulation results of the proposed scheme in a future contribution. Slide 16Tran Thi Thao Nguyen, Kyushu Institute of Technology May 2014

Submission doc.: IEEE 11-14/0598r0 Straw Poll Do you agree that TGax should support a mode of uplink multi-user transmission ?  Yes  No  Abstain Slide 17Tran Thi Thao Nguyen, Kyushu Institute of Technology May 2014

Submission doc.: IEEE 11-14/0598r0 Straw Poll Do you agree that any proposal for uplink multi-user transmission protocol for TGax should be a distributed type of protocol ?  Yes  No  Abstain Slide 18Tran Thi Thao Nguyen, Kyushu Institute of Technology May 2014

Submission doc.: IEEE 11-14/0598r0 References [1] “WLAN components (Data Communications and Networking), what-when-how In Depth Tutorials and Information”, and-networking/wlan-components-data-communications-and-networking/ [2] Yaser Pourmohammadi Fallah, Salman Khan, Panos Nasiopoulos, Hussein Alnuweiri, “Hybrid OFDMA/CSMA Based Medium Access Control for Next-Generation Wireless LANs”, IEEE Communications Society ICC 2008 [3] Jinyoung Chun, Wookbong Lee, “Uplink multi-user transmission”, 11-13/1388r0, LG Electronics Slide 19Tran Thi Thao Nguyen, Kyushu Institute of Technology May 2014