Document Number: Date Submitted: Source: Venue: Base Contribution: Purpose: Notice: This document does not represent the agreed views of the IEEE 802.16.

Slides:



Advertisements
Similar presentations
Mobility Consideration for E-MBS Document Number: IEEE C802.16m-08/584r1 Date Submitted: Source: Chun-Yen Wang, Chun-Yuan, Chiu, Fang-Ching (Frank)
Advertisements

Multi-carrier Handover Method IEEE Presentation Submission Template (Rev. 9) Document Number: IEEE C802.16m-08/1007r1 Date Submitted:
1 Call-back HO Procedure for Reentry Femtocell Document Number: IEEE C802.16m-08/1438r1 Date Submitted: Source: Yung-Ting Lee, Hua-Chiang Yin.
Slide m HARQ Document Number: C802.16m-08/340 Date Submitted: Source: Sean McBeath, Juejun Liu, Jianmin LuVoice: Huawei Technologies
1 Time Synchronization Methods for Femtocell Document Number: IEEE C802.16m-08/1323r1 Date Submitted: Source: Yung-Ting Lee, Hua-Chiang Yin.
1 Adaptive Channel Bandwidth Allocations for Femtocell Document Number: IEEE C802.16m-08/1325r1 Date Submitted: Source: Yung-Ting Lee, Hua-Chiang.
DL/UL data transmission for M2M devices IEEE Presentation Submission Template (Rev. 9) Document Number: IEEE C802.16p-10/0020 Date Submitted:
Reduced Signaling Overhead for Retransmissions on the UL of m IEEE Presentation Submission Template (Rev. 9) Document Number: IEEE S802.16m-07/250.
Adaptive Frequency Reuse in Project m SDD Document Number: S802.16m-07/203r1 Date Submitted: November 12, 2007 Source: I-Kang Fu
MAC PDU Multiplexing Scheme for IEEE m Document Number: IEEE C802.16m-08/1015r1 Date Submitted: Source: Fang-Ching (Frank) Ren, Richard.
802.16m Preamble RG Report IEEE Presentation Submission Template (Rev. 9) Document Number: IEEE C802.16m-08/637 Date Submitted: Source:
1 Multicast A-A-MAP Symbols Mapping Scheme in m systems ( ) Document Number: C80216m_10/0218 Date Submitted: Source: Yu-Hao Chang,
Comment on Femto ABS Reliability ( ) IEEE Presentation Submission Template (Rev. 9) Document Number: IEEE C802.16m-09/3095r2 Date Submitted:
Analysis of BR preamble selection strategies in 5-step BR procedure IEEE Presentation Submission Template (Rev. 9) Document Number: IEEE C80216m-10_1249r1.
Staggered Secondary Carrier Wake-up in Multicarrier Sleep Mode Operation ( ) Document Number: IEEE C80216m-09/2167 Date Submitted:
Comments on HO decision and initiation ( ) IEEE Presentation Submission Template (Rev. 9) Document Number: IEEE C80216m-10_0765 Date Submitted:
MAC support for LBS in IEEE802.16m Document Number: C80216m-09_1986 Date Submitted: Source: Kiseon Ryu, Jinsoo Choi, Ronny Kim, and Jin Sam.
Common Header design in m IEEE Presentation Submission Template (Rev. 9) Document Number: IEEE C802.16m-09/0178 Date Submitted: Source:
Group based paging operation for p system IEEE Presentation Submission Template (Rev. 9.2) Document Number: IEEE C80216p-10_0018 Date Submitted:
1 Sleep Cycle Configuration for Sleep Mode Operation Document Number: IEEE C802.16m-09/0972 Date Submitted: 2009/04/27 Source: Chung-Hsien Hsu, Yih-Shen.
Improving Client Energy Consumption in m Document Number: IEEE S802.16m-09/107r4 Date Submitted: Source: N. Himayat, M. Venkatachalam,
8Tx Dedicated Pilot Pattern Simulation Results IEEE Presentation Submission Template (Rev. 9) Document Number: IEEE C802.16m-09/0805 Date Submitted:
Analysis of BR preamble selection strategies in 5-step BR procedure IEEE Presentation Submission Template (Rev. 9) Document Number: IEEE C80216m-10_1249r1.
Proposed Feature Rapporteur Group Timelines and Call for contributions IEEE Presentation Submission Template (Rev. 9) Document Number: IEEE C802.16m-09/0762r2.
HARQ Operational Modes for m Document Number: S80216m-08/322 Date Submitted: Source: Yih-Shen Chen, Kelvin Chou, I-Kang Fu, and Paul Cheng.
Network Entry Procedure with Multi-Carrier Support Document Number: IEEE C802.16m-09/0966 Date Submitted: 2009/04/27 Source: I-Kang Fu, Yih-Shen Chen,
Closed-Loop Power Allocation for Space-time Coding in Project m SDD Document Number: S802.16m-07/200 Date Submitted: November 12, 2007 Source: Fan-Shuo.
Secondary Carrier Control in Multicarrier Sleep Mode Operation ( ) Document Number: IEEE C80216m-09/2299 Date Submitted: Source:
Extended MAC Header for System Information Update Notification ( ) Document Number: IEEE C80216m-10/0212 Date Submitted: Source: Yih-Shen.
Sleep Mode Configuration via BR Header ( ) Document Number: IEEE C80216m-09/2297 Date Submitted: Source: Yih-Shen Chen, Kelvin Chou,
Location Estimation and Tracking System for Mobile Devices in Project m SDD Document Number: S802.16m-07/202 Date Submitted: November 12, 2007 Source:
1 Proposal to include dynamic paging groups in the SDD document Document Number:S802.16m-08/554 Date Submitted: Jul 14, 2008 Source: Shih-Lin Wu,Ming-Jer.
Notice: This document does not represent the agreed views of the IEEE Working Group or any of its subgroups. It represents only the views of the.
MAC Header Design Analysis for Upper MAC IEEE Presentation Submission Template (Rev. 9) Document Number: IEEE C802.16m-08/896 Date Submitted:
Support of Emergency Alert in m (AWD-15.2) IEEE Presentation Submission Template (Rev. 9) Document Number: IEEE C802.16m-09/1554r2 Date Submitted:
C80216m-08_216 ProjectIEEE Broadband Wireless Access Working Group TitleDownlink Physical Resource Allocation Unit Date Submitted.
Multiple-User Unsolicited Grant Service (UGS) Slot IEEE Presentation Submission Template (Rev. 9) Document Number: IEEE S802.16m-07/261 Date Submitted:
Notice: This document does not represent the agreed views of the IEEE Working Group or any of its subgroups. It represents only the views of the.
Synchronization Drafting Group Schedule Document Number: IEEE C802.16m-09/0379 Date Submitted: Source: Paul Cheng
Femtocell Over-The-Air Signaling Supported by Relay Link Document Number: IEEE C802.16m-09/0809 Date Submitted: 2009/04/24 Source: Hung-Yu Wei, Shih-Lung.
High Level Views on Multicarrier Operations for IEEE m Document Number: S802.16m-08/327 Date Submitted: Source: Kelvin
Backward Compatible FDD m Frame Structure for Full-Duplex and Half-Duplex MS Operations Document Number: S802.16m-08/031r2 Date Submitted: January.
Group Sleep Mode in IEEE m IEEE Presentation Submission Template (Rev. 9) Document Number: IEEE C802.16m-08/591r3 Date Submitted:
Text Proposal for E-MBS MAP Configuration Update ( ) Document Number: IEEE C802.16m-09/2918 Date Submitted: Source: Chun-Yuan Chiu, Chun-Yen.
Definition of Device Collaboration Mode for Low Power Consumption IEEE Presentation Submission Template (Rev. 9) Document Number: IEEE C802.16p-10_0030.
Notification of SFH Updating ( ) Document Number: IEEE C80216m-09/2907 Date Submitted: Source: Yih-Shen Chen, Kelvin Chou and Paul Cheng.
Design Consideration for Irregular Subframe Allocation in m Network with Mixed CP Lengths Document Number: IEEE S802.16m-08/570r1 Date Submitted:
Support for Location Based Services IEEE Presentation Submission Template (Rev. 9) Document Number: IEEE S802.16m-08/324 Date Submitted:
Femto BS coexistence with WiFi-AP IEEE Presentation Submission Template (Rev. 9) Document Number: [IEEE C802.16m-08/1309r1] Date Submitted: [ ]
1 Power Saving Considerations for IEEE m Femtocell IEEE Presentation Submission Template (Rev. 9) Document Number: IEEE C802.16m-08/1411 Date.
Document Number: Date Submitted: Source: Venue: Base Contribution: Purpose: Notice: This document does not represent the agreed views of the IEEE
Relay/EMBS Ad-Hoc Group Report Document Number: IEEE C802.16m-09/2678r1 Date Submitted: Source: Kanchei(Ken) Loa Relay/LBS/EMBS.
1 Scalable Ranging Codes for Femtocell Document Number: IEEE C802.16m-08/1324r1 Date Submitted: Source: Yung-Ting Lee, Hua-Chiang Yin .
Radio Resource Management for AAS in Project m SDD Document Number: S802.16m-07/201 Date Submitted: November 12, 2007 Source: Chieh Yuan Ho
Mobility Management with Multi-Carrier Support in IEEE m Document Number: S802.16m-08/144 Date Submitted: Source: Kelvin
Notification of SFH Updating ( ) Document Number: IEEE C80216m-09/2907 Date Submitted: Source: Yih-Shen Chen, Kelvin Chou and Paul Cheng.
Deregistration Identifier Analysis IEEE Presentation Submission Template (Rev. 9) Document Number: IEEE C80216m-10_1083r1 Date Submitted:
Clarification on the Usage of Femtocell Over The Air (OTA) Signaling ( ) Document Number: IEEE C802.16m-09/2603 Date Submitted: Source:
Some Considerations about 16m Network Architecture Document Number: C80216m-08_491 Date Submitted: Source: Qu Hongyun, Fang Huiying, Liu Yang,
Improving Client Energy Consumption in m
FDD Frame Structure Supporting TDD-based Legacy Systems for P802.16m
Extended header for piggybacked bandwidth request (P80216m/D
Project Planning Committee Opening Report
HARQ Soft Buffer Management for m
Clarification on ACK of Bandwidth Request
Resource Shifting in Persistent Scheduling
Comments on SFH IE to Support Network Entry for Multi-Carrier MS
Comments on HO decision and initiation ( )
Comments on HO decision and initiation ( )
HARQ and ARQ Interactions
Presentation transcript:

Document Number: Date Submitted: Source: Venue: Base Contribution: Purpose: Notice: This document does not represent the agreed views of the IEEE Working Group or any of its subgroups. It represents only the views of the participants listed in the Source(s) field above. It is offered as a basis for discussion. It is not binding on the contributor(s), who reserve(s) the right to add, amend or withdraw material contained herein. Release: The contributor grants a free, irrevocable license to the IEEE to incorporate material contained in this contribution, and any modifications thereof, in the creation of an IEEE Standards publication; to copyright in the IEEEs name any IEEE Standards publication even though it may include portions of this contribution; and at the IEEEs sole discretion to permit others to reproduce in whole or in part the resulting IEEE Standards publication. The contributor also acknowledges and accepts that this contribution may be made public by IEEE Patent Policy: The contributor is familiar with the IEEE-SA Patent Policy and Procedures: and. Further information is located at and. Power Saving Management for IEEE m C802.16m-08/ Chung-Hsien Yih-Shen Paul MediaTek Inc. No.1, Dusing Rd. 1, Hsinchu Science-Based Industrial Park, Hsinchu, Taiwan 300, R.O.C. IEEE m-08/024 Call for Comments and Contributions on Project m System Description Document (SDD) In response to the topic: Upper MAC concepts and methods (power management) N/A To be discussed and adopted by TGm for the m SDD

Introduction The TGm SRD (IEEE m-07/002r4) specifies –Section 6.11 Enhanced Power Saving IEEE m shall provide support for enhanced power saving functionality to help reduce power consumption in devices for all services and applications. The TGm SDD (IEEE m-08/003r3) specifies –Section Sleep During sleep mode, MS can do power saving during traffic interval This contribution discusses and proposes different types of the power saving class for different service types, including –PSC of type II for UGS and RT-VR service –PSC of type IV for ERT-VR service –PSC of type I for BE and NRT-VR service –PSC of type III for multicast as well as for management operations

Service Type Comparison All the traffic can be generally classified into five service types –Real-time constant bit-rate (e.g., T1/E1 and VoIP without silence suppression) –Extended real-time variable bit-rate (e.g., VoIP with silence suppression) –Real-time variable bit-rate (e.g., MPEG video) –Non-real time variable bit-rate (e.g., FTP, HTTP) –Best effort (e.g., ) RT-CBRERT-VRRT-VRNRT-VRBE Data generated interval Periodic Dynamic Packet size Fixed Fixed/ dynamic Dynamic Delay sensitivity High MiddleLow

Power Saving Class Consideration Power saving class (PSC) –A group of connections that have common demand properties –PSC shall be designed to enhance the power saving –PSC shall be designed to mimic the characteristics of the service type (e.g., data generated interval, packet size, and delay sensitivity) Four types of PSC are proposed and summarized as follows Sleep cycle = listening interval + sleep interval

PSC of Type II for 16m System Recommend for connections of RT-CBR, RT-VR type –T1/E1, VoIP without silence suppression, and MPEG video Design concepts –Fixed sleep cycle length for periodic data generation –Fixed/dynamic listening interval for fixed/variable-size packets –Insert sleep offset in the head of the sleep mode Consider the waiting time for entering the sleep mode after the negotiation

PSC of Type II for 16m System (cont.) Example 1: –Real-time data streams consisting of fixed-size data packets issued at periodic intervals (e.g., T1/E1 and VoIP without silence suppression) –Sleep negotiation follows the packet transmission immediately Example 2: –Real-time data streams consisting of variable-size data packets issued at periodic intervals (e.g., MPEG video) –Packet transmission follows the sleep negotiation immediately

PSC of Type IV for 16m System Recommend for connections of ERT-VR type –VoIP with silence suppression Design concepts –Two types of sleep cycle, the length of each type is fixed –Insert sleep offset in the head of the sleep mode Consider the waiting time for entering the sleep mode after the negotiation Example: VoIP with silence suppression traffic model

PSC of Type I for 16m System Recommend for connections of BE, NRT-VR type –HTTP, FTP, Design concepts –Fixed listening interval for receiving the indication message –Binary exponential increase sleep cycle length –Insert sleep offset in the head of the sleep mode Considering the behavior of traffic pattern and user interaction while re-enter the sleep mode

PSC of Type I for 16m System (cont.) Example 1: –Web browsing (HTTP) traffic model –Mean = 30 sec for reading time from the TGm EMD (IEEE m-07/004r1) Example 2: –File transfer protocol (FTP) model –Mean = 180 sec for reading time from the TGm EMD (IEEE m-07/004r1)

PSC of Type III for 16m System Recommend for multicast connections as well as for management operations –Periodic ranging, DSx operations, MOB_NBR-ADV etc. –Actually, it is the PSC of type III in 16e system

Proposed Text for SDD Add the following text into Session 10 of the SDD (IEEE m-08/003) text begin x Sleep Mode Management 10.x.y Power Saving Class Power saving class (PCS) is a group of connections that common demand properties. The enhanced PSC shall be considered in IEEE m. Therefore, the PSC shall be designed to mimic the characteristics of the service type, e.g., data generated interval, packet size, and delay sensitivity. 10.x.y.1 Power Saving Class of Type I.PSC of type I is recommended for connections of NRT-VR and BE type. Fixed listening interval and dynamic sleep cycle length shall be considered in type I. Moreover, the behavior of traffic pattern and user interaction while re-entry the sleep mode shall also be considered. 10.x.y.2 Power Saving Class of Type II PSC of type II is recommended for connections of RT-CBR and RT-VR type. Fixed sleep cycle length and fixed/dynamic listening interval shall be considered in type II. Moreover, an interval between the data transmission/reception and sleep negotiation shall be considered for enhancing the power saving.

Proposed Text for SDD (cont.) 10.x.y.3 Power Saving Class of Type III PSC of type III is recommended for multicast connections as well as for management operations. Actually, it is the PSC of type III in 16e system. 10.x.y.3 Power Saving Class of Type IV PSC of type IV is recommended for connections of ERT-VR type, i.e., VoIP with silence suppression. The length of sleep cycle shall be considered for active talking and silence periods individually. Moreover, an interval between the data transmission/reception and sleep negotiation shall be considered for enhancing the power saving text end