Doc.: sg-whitespace 09-0058r2 Submission March 2009 Gerald Chouinard, CRCSlide 1 802.22 Presentation to the ECSG on White Space Author: Notice: This document.

Slides:



Advertisements
Similar presentations
Sg-whitespace-09/0019r0 Submission January 2009 Steve Shellhammer, QualcommSlide 1 Impact of FCC R&O on IEEE 802 Date: Authors: Notice: This.
Advertisements

Doc.: IEEE /0206r0 Submission April 2007 Baowei Ji, SamsungSlide 1 Improper to Limit Long Quiet Period at the end of a Superframe IEEE P
Doc.: IEEE /0206r1 Submission April 2007 Baowei Ji, SamsungSlide 1 Improper to Limit Long Quiet Period at the end of a Superframe IEEE P
Doc.: IEEE /0267r0 Submission June 2007 Wendong Hu, STMicroelectronicsSlide 1 The Spectrum Manager in a Proposed Reference Architecture IEEE P
Doc.: IEEE /0028r0 Submission July 2006 Steve Shellhammer, QualcommSlide 1 Coexistence Scenario – A Pair of Unlicensed Wireless Networks Notice:
Doc.: IEEE /0029r0 Submission July 2006 Steve Shellhammer, QualcommSlide 1 Coexistence Scenario – A Pair of Unlicensed Wireless Networks, one.
Doc.: IEEE /xxxxr0 Submission May Cheng Shan, Samsung Electronics Slide 1 CBP PHY Design IEEE P Wireless RANs Date: Authors:
Doc.: IEEE /0008r2 Submission March 2006 Steve Shellhammer, QualcommSlide 1 EC Summary of PAR Development Notice: This document has been prepared.
Doc.: IEEE /0026r0 Submission July 2005 Stephen R Whitesell, VTech CommunicationsSlide 1 Cordless Telephone Coexistence Considerations Notice:
Doc.: IEEE /0156r0 Submission August 2006 Carlos Cordeiro, PhilipsSlide 1 Superframe Structure IEEE P Wireless RANs Date: Authors:
Doc.: IEEE /0006r0 Submission January 2006 Gerald Chouinard, CRCSlide 1 TV bands White Spaces and DTV receiver RF front-end performance and protection.
Doc.: IEEE /XXXXr0 Submission September 2006 Steve Shellhammer, QualcommSlide 1 An Evaluation of DTV Pilot Power Detection IEEE P Wireless.
Doc.: IEEE /0127r1 Submission July 2006 Slide 1 Huawei Sensing Scheme for DVB-T IEEE P Wireless RANs Date: Authors: Notice: This.
Doc.: IEEE /1465r0 Submission September 2006 K. Kim et al.Slide 1 RA-OLSR Text Updates Notice: This document has been prepared to assist IEEE.
Doc.: IEEE r1 Submission June 2007 Chang-Joo Kim, ETRISlide 1 [Proposed Burst Allocation Method Relating to DS/US-MAP] IEEE P Wireless.
Doc.: IEEE /xxxxr0 Submission September 2006 Suhas Mathur, Qualcomm Inc.Slide 1 An Evaluate of the PN sequence based detection of DTV signals.
Doc.: IEEE /0403r0 Submission August 2007 Wendong Hu, STMicroelectronicsSlide 1 Impact of Directional Antenna at CPEs on Coexistence Beaconing.
Doc.: IEEE /0023r0 Submission July 2005 Steve Shellhammer, Qualcomm Inc.Slide 1 Questions to the Contention-based Protocol (CBP) Study Group Notice:
Doc.: IEEE /0022r0 Submission July 2005 Steve Shellhammer, Qualcomm Inc.Slide 1 Discussion on Contention-based Protocol (CBP) Study Group Notice:
Doc.: IEEE Submission July 2008 Alvarion Some simulation results for h CX-CBP in 3.65GHz Notice: This document has been prepared.
Doc.: IEEE /0265r1 Submission Nov Cheng Shan, Samsung Electronics Slide 1 BS-to-BS CBP Communication IEEE P Wireless RANs Date:
Doc.: IEEE / Submission March 2007 Monisha Ghosh, PhilipsSlide 1 DTV Signal Sensing Using The PN511 Sequence IEEE P Wireless.
Doc.: IEEE Submission March 2007 Cheng Shan, Samsung ElectronicsSlide 1 Joint Transmitted EIRP Control for the Protection of TV.
Doc.: IEEE /xxxxr0 Submission July Cheng Shan, Samsung Electronics Slide 1 Distributed SCH Design IEEE P Wireless RANs Date:
Doc.: IEEE /0111r0 Submission April 2008 Steve Shellhammer, QualcommSlide 1 Spectral Mask Implications IEEE P Wireless RANs Date:
Doc.: IEEE /90r0 Submission Nov., 2012 NICTSlide b NICT Proposal IEEE P Wireless RANs Date: Authors: Notice: This document.
Doc.: IEEE /0130r0 Submission July 2010 Gerald Chouinard, CRCSlide Coexistence Considerations Author: Notice: This document has been.
Doc.: IEEE /0052r1 Submission March 2009 Gerald Chouinard, CRCSlide Presentation to the ECSG on White Space Author: Notice: This document.
Doc.: IEEE /0530r1 Submission November 2007 Gerald Chouinard, CRCSlide 1 Wireless Microphone Sensing IEEE P Wireless RANs Date:
Doc.: IEEE /0152r0 Submission May 2008 Gerald Chouinard, CRCSlide 1 Incumbent database query IEEE P Wireless RANs Date: Authors:
Doc.: IEEE /0462r1 Submission Nov Cheng Shan, Samsung Electronics Slide 1 Aggregated Interference from CPEs IEEE P Wireless RANs Date:
Doc.: IEEE /0121r0 Submission July 2010 Gerald Chouinard, CRCSlide Coexistence Aspects Author: Notice: This document has been prepared.
Doc.: IEEE /0181r0 Submission September 2009 Gerald Chouinard, CRCSlide 1 Extended Network Topologies Author: Notice: This document has.
Doc.: IEEE /0254r0 Submission May 2007 Sai Shankar N QualcommSlide 1 Aggregate Interference at DTV Receiver Date: Authors: Notice:
Doc.: IEEE /0411r1 Submission September 2007 Ahmed Sadek, QualcommSlide 1 Aggregate Interference at a DTV Receiver for a Hexagonal Cell Structure.
Doc.: IEEE /0052r0 Submission March 2009 Gerald Chouinard, CRCSlide Presentation to the ECSG on White Space Author: Notice: This document.
Doc.: IEEE /0129r2 Submission March 2007 David Mazzarese, Samsung ElectronicsSlide Beacon Frame Options IEEE P Wireless RANs.
Submission doc.:IEEE /0140r0 Mar Chang-Joo Kim, ETRI Slide 1 [Mixed Resource Composition] IEEE P Wireless RANs Date: Authors:
Doc.: IEEE /0118r0 Submission May 2008 Gerald Chouinard, CRCSlide 1 Use of collaborative sensing to reduce false positive results IEEE P
Doc.: IEEE /0529r0 Submission November 2007 Gerald Chouinard, CRCSlide 1 TV Incumbent Database Access IEEE P Wireless RANs Date:
Doc.: IEEE /0010r0 Submission January 2013 Gerald ChouinardSlide 1 Overview of the Beacon Standard IEEE Wireless RANs Date:
Doc.: IEEE /0038r0 Submission May 2005 Paul Thompson, Paul Thompson Associates, LLCSlide 1 WRAN Base Station Class Proposal IEEE P Wireless.
[ Considering of Intra-cell multiple CBP response]
Extended Network Topologies
Aggregated Interference from CPEs
Coexistence Capacity Allocation Methods
TG1 Required Detection SNRs Versus Protected Radii
On Coexistence Mechanisms
ATSC DTV Receiver Performance Multipath Equalization
Wireless Microphone Sensing
[Adaptive Spreading Scheme]
[Adaptive Spreading Scheme]
IEEE WG Opening Report – March 2007
On Coexistence Mechanisms
Technical complexity related to meeting the RF mask
Experimental DTV Sensor
Common Quiet Times for Spectrum Sensing
IEEE P Wireless RANs Date:
Forward Coexistence Measurement Report to Neighbour Cell
Binary Preamble Sequence Set
IEEE P Wireless RANs Date:
IEEE P Wireless RANs Date:
Technical complexity related to meeting the RF mask
Dynamic sensing schemes
Common Quiet Times for Spectrum Sensing
IEEE P Wireless RANs Date:
Questions to the Contention-based Protocol (CBP) Study Group
Presentation to the ECSG on White Space
Interference-free scheduling
Interference-free scheduling
Presentation transcript:

doc.: sg-whitespace r2 Submission March 2009 Gerald Chouinard, CRCSlide Presentation to the ECSG on White Space Author: Notice: This document has been prepared to assist IEEE It is offered as a basis for discussion and is not binding on the contributing individual(s) or organization(s). The material in this document is subject to change in form and content after further study. The contributor(s) 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 and Procedures: The contributor is familiar with the IEEE 802 Patent Policy and Procedures, including the statement "IEEE standards may include the known use of patent(s), including patent applications, provided the IEEE receives assurance from the patent holder or applicant with respect to patents essential for compliance with both mandatory and optional portions of the standard." Early disclosure to the Working Group of patent information that might be relevant to the standard is essential to reduce the possibility for delays in the development process and increase the likelihood that the draft publication will be approved for publication. Please notify the Chair Carl R. Stevenson as early as possible, in written or electronic form, if patented technology (or technology under patent application) might be incorporated into a draft standard being developed within the IEEE Working Group. If you have questions, contact the IEEE Patent Committee Administrator at. R. Abstract This contribution illustrates the work carried out by the WG over the last 5 years in developing the Wireless Regional Area Network standard to be used in TV White Space.

doc.: sg-whitespace r2 Submission March 2009 Gerald Chouinard, CRCSlide 2 Outline 1.The IEEE WRAN Standard 2.Coexistence among communication systems in TV White Space a)Protection of TV broadcasting b)Protection of Part 74 wireless microphones c) wireless microphone beacon d)Quiet periods for sensing e)Self-coexistence among WRAN systems 3.Further observations a)DTV coverage protection b)RF mask

doc.: sg-whitespace r2 Submission March 2009 Gerald Chouinard, CRCSlide 3 IEEE RAN Regional Area Network IEEE Standards 30 km MHz Multipath absorption Window (Cyclic prefix ) μsec μsec 23 Mbit/s BW= 6,7,8 MHz

doc.: sg-whitespace r2 Submission March 2009 Gerald Chouinard, CRCSlide 4 Rural Broadband: - Cable-modem / ADSL - WiFi hot-spots in ISM bands - Higher power, lower frequency broadband access system 30 km 23 km 16 km MAC Long round-trip delays QPSK 16-QAM 64-QAM PHY Adaptive modulation - Medium power wireless systems 5 km

doc.: sg-whitespace r2 Submission March 2009 Gerald Chouinard, CRCSlide 5 Typical CPE installation (Fixed) Sensing antenna GPS antenna TX/RX WRAN Antenna

doc.: sg-whitespace r2 Submission March 2009 Gerald Chouinard, CRCSlide Frame Structure Superframe = 160 ms Frame = 10 ms Superframe =16 frames

doc.: sg-whitespace r2 Submission March 2009 Gerald Chouinard, CRCSlide Reference Architecture

doc.: sg-whitespace r2 Submission March 2009 Gerald Chouinard, CRCSlide 8 Outline 1.The IEEE WRAN Standard 2.Coexistence among communication systems in TV White Space a)Protection of TV broadcasting b)Protection of Part 74 wireless microphones c) wireless microphone beacon d)Quiet periods for sensing e)Self-coexistence among WRAN systems 3.Further observations a)DTV coverage protection b)RF mask

doc.: sg-whitespace r2 Submission March 2009 Gerald Chouinard, CRCSlide 9 Coexistence among communications systems in TV White Space Self- coexistence

doc.: sg-whitespace r2 Submission March 2009 Gerald Chouinard, CRCSlide 10 Outline 1.The IEEE WRAN Standard 2.Coexistence among communication systems in TV White Space a)Protection of TV broadcasting b)Protection of Part 74 wireless microphones c) wireless microphone beacon d)Quiet periods for sensing e)Self-coexistence among WRAN systems 3.Further observations a)DTV coverage protection b)RF mask

doc.: sg-whitespace r2 Submission March 2009 Gerald Chouinard, CRCSlide 11 WRAN CPE and DTV protection DTV WRAN

doc.: sg-whitespace r2 Submission March 2009 Gerald Chouinard, CRCSlide 12 DTV TX (1 MW ERP, 300 m) 118 km 41 dB(uV/m) F(50, 90) 4 W WRAN Base Station 16.8 km 16.2 km 4 W WRAN base station keep-out distance 36.3 dB(uV/m) WRAN keep-out distance: Minimum field strength: 41 dB(uV/m) Protection ratio: 23 dB CPE antenna front-to-back: 14 dB Interfering field strength: 32 dB(uV/m) Co-channel keep-out distance between DTV and WRAN Geolocation & Database km

doc.: sg-whitespace r2 Submission March 2009 Gerald Chouinard, CRCSlide 13 TV sensing techniques studied by Blind –Energy detection –Eigenvalue sensing (I2R) Multi-resolution (MRSS) Spectral correlation –Sensing for one TV band –Sensing procedure for TV signals –Sensing for multiple TV channel band Selection of frequency components: emphasizing near Parts with abrupt changes ATSC cyclostationary sensing technique Signal specific – ATSC Sequence correlation sensing ATSC signature Pilot recovery Single ATSC data field Multiple ATSC data fields Sync segment – ATSC FFT-based Pilot sensing (Philips) – ATSC Pilot sensing technique using high order statistics – ATSC PLL-based Pilot sensing technique Dual FPLL pilot sensing – ATSC Pilot covariance sensing technique Covariance based sensing – Higher order statistics based pilot detection

doc.: sg-whitespace r2 Submission March 2009 Gerald Chouinard, CRCSlide 14 DTV Broadcast Incumbent Sensing ATSC FFT-based Pilot Sensing Technique (Philips) 1 ms sensing window will allow a 32-point FFT while a 5 ms window will allow a 256-point FFT FFT applied around the pilot carrier

doc.: sg-whitespace r2 Submission March 2009 Gerald Chouinard, CRCSlide 15 DTV Broadcast Incumbent Sensing Sensing techniques performance comparison

doc.: sg-whitespace r2 Submission March 2009 Gerald Chouinard, CRCSlide 16 Outline 1.The IEEE WRAN Standard 2.Coexistence among communication systems in TV White Space a)Protection of TV broadcasting b)Protection of Part 74 wireless microphones c) wireless microphone beacon d)Quiet periods for sensing e)Self-coexistence among WRAN systems 3.Further observations a)DTV coverage protection b)RF mask

doc.: sg-whitespace r2 Submission March 2009 Gerald Chouinard, CRCSlide 17 WRAN coverage and co-channel operation with wireless microphones R1 R2 Minimum WRAN field strength: 29 dB(uV/m) Edge of coverage of the WRAN BS (e.g., 17 km for 4 W EIRP, 30 km for 100 W EIRP) Area where CPEs need to change frequency Area where CPEs need to reduce their transmit power as a function of their distance to the wireless microphone operation Wireless microphone operation R2 F(50, 99.9) F(50, 10)

doc.: sg-whitespace r2 Submission March 2009 Gerald Chouinard, CRCSlide 18 Wireless microphone sensing techniques studied by Signal specific Wireless microphone covariance sensing technique –Covariance based sensing –Covariance absolute value detection –Covariance Frobenius norm detection Spectral correlation sensing technique Sensing for one TV band –Sensing Procedure for wireless microphone signals

doc.: sg-whitespace r2 Submission March 2009 Gerald Chouinard, CRCSlide 19 Outline 1.The IEEE WRAN Standard 2.Coexistence among communication systems in TV White Space a)Protection of TV broadcasting b)Protection of Part 74 wireless microphones c) wireless microphone beacon d)Quiet periods for sensing e)Self-coexistence among WRAN systems 3.Further observations a)DTV coverage protection b)RF mask

doc.: sg-whitespace r2 Submission March 2009 Gerald Chouinard, CRCSlide Beacon Design Inter-beacon networking period I-channel Q-channel 3.33 ms 98 ms - Source address - Location - subchannel map - signature - certificate 101 ms frame

doc.: sg-whitespace r2 Submission March 2009 Gerald Chouinard, CRCSlide Beacon Design PPDU (101 octets) Location Signature Certificate

doc.: sg-whitespace r2 Submission March 2009 Gerald Chouinard, CRCSlide 22 Detection of the beacon -114 dBm

doc.: sg-whitespace r2 Submission March 2009 Gerald Chouinard, CRCSlide 23 Outline 1.The IEEE WRAN Standard 2.Coexistence among communication systems in TV White Space a)Protection of TV broadcasting b)Protection of Part 74 wireless microphones c) wireless microphone beacon d)Quiet periods for sensing e)Self-coexistence among WRAN systems 3.Further observations a)DTV coverage protection b)RF mask

doc.: sg-whitespace r2 Submission March 2009 Gerald Chouinard, CRCSlide Frame Structure Superframe = 160 ms Frame = 10 ms Superframe =16 frames

doc.: sg-whitespace r2 Submission March 2009 Gerald Chouinard, CRCSlide Frame Structure Frame quiet period: 5.1 ms Superframe = 160 ms Frame = 10 ms Superframe =16 frames

doc.: sg-whitespace r2 Submission March 2009 Gerald Chouinard, CRCSlide Superframe Structure Multi-frame quiet periods

doc.: sg-whitespace r2 Submission March 2009 Gerald Chouinard, CRCSlide Superframe Structure Superframe quiet period: up to 158 ms

doc.: sg-whitespace r2 Submission March 2009 Gerald Chouinard, CRCSlide 28 Outline 1.The IEEE WRAN Standard 2.Coexistence among communication systems in TV White Space a)Protection of TV broadcasting b)Protection of Part 74 wireless microphones c) wireless microphone beacon d)Quiet periods for sensing e)Self-coexistence among WRAN systems 3.Further observations a)DTV coverage protection b)RF mask

doc.: sg-whitespace r2 Submission March 2009 Gerald Chouinard, CRCSlide 29 WRAN Self-coexistence considerations Different TV channel selection for operational channel and first backup channel Frame allocation signalled by the superframe control header (SCH) MAC self-coexistence schemes PHY coexistence mechanisms

doc.: sg-whitespace r2 Submission March 2009 Gerald Chouinard, CRCSlide 30 Coexistence Beacons for Inter-WRAN Communications Inter-cell communication mechanism to keep BSs aware of the other nearby WRAN cell operation: –Coexistence beacon Transmitted during the self-coexistence windows at the end of some frames by the BS and/or some designated CPEs Monitored by BSs and other CPEs from same and different cells on same channel or different channel for future channel switching Signals IP address of BS and CPE every 15 min. as asked by R&O Coexistence Beacon Protocol (CBP) burst

doc.: sg-whitespace r2 Submission March 2009 Gerald Chouinard, CRCSlide 31 Inter-WRAN Communications Scenarios (Require Neighbor-cell CPEs to exist) The face-to-face CPEs case: The back-to-back CPEs case:

doc.: sg-whitespace r2 Submission March 2009 Gerald Chouinard, CRCSlide 32 Outline 1.The IEEE WRAN Standard 2.Coexistence among communication systems in TV White Space a)Protection of TV broadcasting b)Protection of Part 74 wireless microphones c) wireless microphone beacon d)Quiet periods for sensing e)Self-coexistence among WRAN systems 3.Further observations a)DTV coverage protection b)RF mask

doc.: sg-whitespace r2 Submission March 2009 Gerald Chouinard, CRCSlide 33 DTV Coverage: Athen, GA News Corporations Fox Technology Groups propagation prediction software: tv-simulation-results.doc Noise Limited Contour DTV Coverage: Athen, GA

doc.: sg-whitespace r2 Submission March 2009 Gerald Chouinard, CRCSlide RF Mask 1 dB DTV RX desensitization 4 Watt EIRP Rejection if microphones in 1st adjacent channel 33 dB

doc.: sg-whitespace r2 Submission March 2009 Gerald Chouinard, CRCSlide 35 References 1.IEEE P802.22/ DRAFTv1.0 Draft Standard for Wireless Regional Area Networks Part 22: Cognitive Wireless RAN Medium Access Control (MAC) and Physical Layer (PHY) specifications: Policies and procedures for operation in the TV Bands, April FCC R&O