March 2001 Sid Schrum, et al., Texas InstrumentsSlide 1 doc.: IEEE 802.11-01/163 Submission p-DCF Proposal Summary Sid Schrum, Jin-Meng Ho, Khaled Turki.

Slides:



Advertisements
Similar presentations
Achieving Throughput Fairness in Wireless Mesh Network Based on IEEE Janghwan Lee and Ikjun Yeom Division of Computer Science KAIST
Advertisements

Doc.: IEEE /144 Submission March 2001 Mathilde Benveniste, AT&T Labs - ResearchSlide 1 An E-DCF Proposal Using TCMA Mathilde Benveniste AT&T Labs,
Doc.: IEEE /037 Submission January 2001 Khaled Turki et. al,Texas InstrumentsSlide 1 Simulation Results for p-DCF, v-DCF and Legacy DCF Khaled.
Doc.: IEEE /037r1 Submission March 2001 Khaled Turki et. al,Texas InstrumentsSlide 1 Simulation Results for p-DCF, v-DCF and Legacy DCF Khaled.
March 2001 Jin-Meng Ho, et al., Texas InstrumentsSlide 1 doc.: IEEE /139 Submission Presentation for Proposed p-DCF Contention Access Enhancement.
Doc.: IEEE /0338r1 Submission March 2012 Hung-Yu Wei, National Taiwan UniversitySlide 1 DeepSleep: Power Saving Mode to Support a Large Number.
Doc.: IEEE /387r1 Submission November 2000 W.-P. Ying, M. Nakahara, S. Ho, NextComm, Inc.Slide 1 A Scheduling Scheme for Level-2 Enhanced PCF.
Doc.: IEEE /513r0 Submission November 2001 Anuj Batra, Texas InstrumentsSlide 1 Project: IEEE P Working Group for Wireless Personal Area.
Doc.: IEEE /375 Submission November 2000 Mathilde Benveniste, AT&T Labs - ResearchSlide 1 Tiered Contention, A QoS-Based Distributed Medium Access.
Doc.: IEEE /413r0 Submission S. Choi, Philips Research July 2001 Slide 1 Can EDCF Support QoS? Sunghyun Choi Philips Research-USA Briarcliff Manor,
Doc.: IEEE /351 Submission October 2000 Maarten Hoeben, Menzo Wentink, IntersilSlide 1 Enhance D-QoS through Virtual DCF Maarten Hoeben, Menzo.
Doc.: IEEE /011r1 Submission January, 2001 Wim Diepstraten, Agere Systems Slide 1 Comparing V-DCF with other EDCF proposals Wim DiepstratenAgere.
Doc.: IEEE /082r0 Submission January 2001 Anuj Batra et al., Texas InstrumentsSlide 1 Project: IEEE P Working Group for Wireless Personal.
Doc.: IEEE /082r1 Submission January 2001 Anuj Batra et al., Texas InstrumentsSlide 1 An Intelligent Frequency Hopping Scheme for Improved Bluetooth.
Doc.: IEEE /026r1 Submission March 2001 Jie Liang, Texas InstrumentsSlide 1 Jie Liang Texas Instruments Incorporated TI Blvd. Dallas, Texas.
Doc.: IEEE /081r0 Submission January 2001 Shoemake, Texas InstrumentsSlide 1 Project: IEEE P Working Group for Wireless Personal Area Networks.
A Bandwidth Allocation/Sharing/Extension Protocol for Multimedia Over IEEE Ad Hoc Wireless LANs Shiann-Tsong Sheu and Tzu-fang Sheu IEEE JOURNAL.
Doc.:IEEE /525Ar0 Submission September 2002 Mathilde Benveniste, Avaya Labs Slide 1 Simplifying Polling Mathilde Benveniste
Doc.: IEEE /080r1 Submission January 2001 Jie Liang, Texas InstrumentsSlide 1 Jie Liang Texas Instruments Incorporated TI Blvd. Dallas,
Doc.: IEEE /026r0 Submission January 2001 Jie Liang, Texas InstrumentsSlide 1 Project: IEEE P Working Group for Wireless Personal Area Networks.
Doc. :IEEE /314r0 Submission Sai Shankar et al., Philips ResearchSlide 1 May 2002 TXOP Request: in Time vs. in Queue Size? Sai Shankar, Javier.
Doc.: IEEE /630r1a Submission S. Choi, Philips Research November 2001 Slide 1 HC Recovery and Backoff Rules Sunghyun Choi and Javier del Prado.
January 2002 Khaled Turki et. al, Texas InstrumentsSlide 1 doc.: IEEE /022r0 Submission TID Field Usage in QoS CF-Poll Khaled Turki and Matthew.
Doc.:IEEE /321r0 Submission May 2002 Y. Liu, et al Slide 1 CC/RR Performance Evaluation Yonghe Liu, Jin-meng Ho, Matthew B. Shoemake, Jie Liang.
Doc.: IEEE /286r0 Submission May 2001 Shoemake and Batra, TI Range vs. Rate Comparison of Remaining IEEE g Proposals: PBCC and CCK-OFDM.
Doc.: IEEE /443r0 Submission October 2001 Anuj Batra, Texas InstrumentsSlide 1 Project: IEEE P Working Group for Wireless Personal Area.
Doc.: IEEE /594r0 Submission September 2002 M. Benveniste & D. Chen, Avaya Labs ResearchSlide 1 PF Differentiation and EDCF/RR Mathilde Benveniste.
Doc.: IEEE /630r4a Submission S. Choi, Philips Research January 2002 Slide 1 HC Recovery and Backoff Rules Sunghyun Choi and Javier del Prado.
Doc.: IEEE /289r0 Submission Bobby Jose,Slide 1 March 2002 CC/RR Alternatives HCF Adhoc Discussion Work Sheet V00.04 Bobby Jose, et.al
Doc.: IEEE /1123r0 Submission September 2010 Zhu/Kim et al 1 Date: Authors: [TXOP Sharing for DL MU-MIMO Support]
Winter 2004 UCSC CMPE252B1 CMPE 257: Wireless and Mobile Networking SET 3f: Medium Access Control Protocols.
Channel Allocation Protocols. Dynamic Channel Allocation Parameters Station Model. –N independent stations, each acting as a Poisson Process for the purpose.
Achieving Quality of Service in Wireless Networks A simulation comparison of MAC layer protocols. CS444N Presentation By: Priyank Garg Rushabh Doshi.
1 An Approach to Real-Time Support in Ad Hoc Wireless Networks Mark Gleeson Distributed Systems Group Dept.
Distributed Control Algorithms for Service Differentiation in Wireless Packet Networks Michael Barry, Andrew T Campbell, Andras Veres
On Optimizing Backoff Counter Reservation and Classifying Stations for the IEEE Distributed Wireless LANs.
Doc.: IEEE /133 Submission March 2001 G. Chesson, A. Singa - Atheros Slide 1 VDCF Simulations Greg Chesson, Aman Singla,
A Virtual Collision Mechanism for IEEE DCF
1 Dynamic Adaption of DCF and PCF mode of IEEE WLAN Abhishek Goliya Guided By: Prof. Sridhar Iyer Dr. Leena-Chandran Wadia MTech Dissertation.
Service differentiation mechanisms for IEEE based wireless networks § Srikant Kuppa & Ravi Prakash Distributed Systems Laboratory The University.
Submission doc.: IEEE /569r1 November 2001 M. Benveniste -- AT&T Labs, ResearchSlide 1 An Access Mechanism for Periodic Contention-Free Sessions.
Performance Analysis of IEEE Distributed Coordination Function (DCF) Author : Giuseppe Bianchi Presented by: 李政修 December 23, 2003.
An Energy Efficient MAC Protocol for Wireless LANs, E.-S. Jung and N.H. Vaidya, INFOCOM 2002, June 2002 吳豐州.
Submission doc.: IEEE 11-14/0866r0 July 2014 Johan Söder, Ericsson ABSlide 1 Traffic modeling and system capacity performance measure Date:
Doc.: IEEE /132r1 Submission March 2001 Greg Chesson et al, Atheros Slide 1 VDCF Presentation Greg Chesson, Wim Diepstraten,
Doc.: IEEE /243r1 Submission May 2001 Mathilde Benveniste, AT&T Labs - ResearchSlide 1 Proposed Changes to the e D1.0 Draft Mathilde Benveniste.
Doc.: IEEE /171 Submission July 2001 Mathilde Benveniste, AT&T Labs - ResearchSlide 1 HCF Access through Tiered Contention Mathilde Benveniste.
Doc.: IEEE /457 Submission December 2000 Mathilde Benveniste, AT&T Labs - ResearchSlide 1 An Enhanced-DCF Proposal Based on ‘Tiered Contention’
January 2001 Don Shaver, et.al. Texas InstrumentsSlide 1 doc.: IEEE /036 Submission Enhanced Contention Period Proposal for QoS and Throughput.
March 2001 Jin-Meng Ho, et al., Texas InstrumentsSlide 1 doc.: IEEE /137 Submission Presentation for Proposed Enhanced Contention Access Jin-Meng.
Doc.: IEEE /361 Submission October 2000 Wim Diepstraten, LucentSlide 1 Distributed QoS resolution Greg Chesson-Altheros Wim Diepstraten- Lucent.
Submission doc.: IEEE /599r1 November 2001 M. Benveniste -- AT&T Labs, ResearchSlide 1 ‘Cyclic Prioritized Multiple Access (CPMA): An Access Mechanism.
COE-541 LAN / MAN Simulation & Performance Evaluation of CSMA/CA
November 2000 Jin-Meng Ho, Texas InstrumentsSlide 1 doc.: IEEE /367 Submission p-DCF for Prioritized MAC Service Jin-Meng Ho, Sid Schrum, and.
November 2000 Jin-Meng Ho, Texas InstrumentsSlide 1 doc.: IEEE /367r1 Submission p-DCF for Prioritized MAC Service (Expanded version based on.
Doc.: IEEE /102r0 Submission January 2003 Sid Schrum, Texas Instruments, Inc.Slide 1 QBSS Downlink Broadcast and Multicast Data Frame Handling.
doc.: IEEE /409r0 Submission March 2002 Mathilde BenvenisteSlide 1 Persistence Factors in EDCF Mathilde Benveniste
December 2000 Jin-Meng Ho, Texas InstrumentsSlide 1 doc.: IEEE /467 Submission Contention-Free and Contention- Based Access in Contention Period.
AIFS – Revisited Mathilde Benveniste
IEEE : Wireless LANs ALOHA, Slotted ALOHA
ECA Overview (Enhanced Contention Access)
EDCF TXOP Bursting Simulation Results
Enhanced Channel Access Joint Proposal
Texas Instruments Incorporated
EDCA Backoff Rules Mathilde Benveniste
HCF Channel Access And Inter-BSS Channel Sharing
802.11e features for the enterprise
Response and Rebuttal To Doc. 01/011
July 2007 doc.: IEEE /2090r0 Aug 2007 Discussion on CCA Sensing on 20/40 MHz Secondary Channel with PIFS and DIFS Date: Authors: Notice:
HCF Channel Access And Inter-BSS Channel Sharing
Presentation transcript:

March 2001 Sid Schrum, et al., Texas InstrumentsSlide 1 doc.: IEEE /163 Submission p-DCF Proposal Summary Sid Schrum, Jin-Meng Ho, Khaled Turki Donald P. Shaver and Matthew B. Shoemake Texas Instruments Incorporated 3000 Aerial Center, Suite 160 Morrisville, NC (919) (Schrum)

March 2001 Sid Schrum, et al., Texas InstrumentsSlide 2 doc.: IEEE /163 Submission 1.Calculate TCPP sum from TCPP 0, TCPP 1 … (Note – this step needs to be done only when TCPP sum is subject to change) 2.Repeatedly generate random numbers (X) and compare to TCPP sum, until either: a) X TCPP sum or b) number of random numbers generated is 256. Increment backoff timer by one slot time each time a new random number is generated. With each random number generated, an additional slot time is available for determining backoff value! 3.Select and queue next frame to transmit under contention access based upon rule: (TCPP 0, …, k – 1 ) < X sum (TCPP 0, …, k ). 4.When back-off timer expires, transmit frame previously queued Example Access Control Algorithm

March 2001 Sid Schrum, et al., Texas InstrumentsSlide 3 doc.: IEEE /163 Submission Single back-off counter vs. multiple backoff counters – no requirement to resolve internal collisions No non-decrementing offset vs. decrementing offset –IFS rules same as legacy DCF, compatible with HCF Multiple straightforward implementation options with hardware / software function partitioning Time-critical transmit access control functions similar to current DCF SIMPLE implementation Facilitates reuse of legacy DCF functions Implementation Complexity, Cont.

March 2001 Sid Schrum, et al., Texas InstrumentsSlide 4 doc.: IEEE /163 Submission Summary, Cont. P-DCF transmit access behavior –Back-off delay DOES NOT equate to Access Delay –What matters is performance under moderate to heavy load implies multiple collisions for worst-case frames. –Binary Exponential Back-off results in long delays when frames experience multiple collisions, even for priority traffic P-DCF –Improved aggregate throughput (fewer collisions) –Fair access with bandwidth available to all traffic classes –lower delay –robust differentiation between traffic classes –Compatible with legacy DCF: P-DCF lowest priority ~ legacy DCF

March 2001 Sid Schrum, et al., Texas InstrumentsSlide 5 doc.: IEEE /163 Submission