Use Cases for Light Communications

Slides:



Advertisements
Similar presentations
Doc.: IEEE /1514r0 Submission November 2014 Edward Au (Marvell Semiconductor)Slide 1 NG60 SG November 2014 Closing Report Date: Authors:
Advertisements

Doc.: IEEE /0173r0 Submission January 2015 Edward Au (Marvell Semiconductor)Slide 1 NG60 SG January 2015 Closing Report Date: Authors:
Doc.: IEEE /1301r0 Submission September 2014 Edward Au (Marvell Semiconductor)Slide 1 NG60 SG September 2014 Closing Report Date: Authors:
May 2015 doc.: IEEE /0496r1 January 2017
May 2015 doc.: IEEE /0496r1 January 2017
Supplementary Plenary Information - July 2010
Light Communications Experience of a Lighting Systems Manufacturer
Light Communication Use-Cases in Retail
Initial Considerations for LC SG
Light Communications Experience of a Lighting Systems Manufacturer
Light Communications Topic Interest Group March 2017 Closing Report
Light Communications Topic Interest Group March 2017 Closing Report
LC use cases & requirements for PAR/CSD
Initial Considerations for LC SG
Light Communications opportunities for a Mobile Service Offering
Short SSW Frame for A-BFT
Use Cases for Light Communications
Month Year doc.: IEEE yy/xxxxr0 September 2018
Potential TGbb task group documents
Supplementary Plenary Information - July 2010
MCS table for SC EDMG Date: 2016-November-07 Authors: November 2016
Light Communications Task Group BB Progress Document
Spec Text Motion Date: Authors: March 2018 Month Year
Spec Text Motion Date: Authors: July 2018 Month Year
IEEE Shop Contents Date: Authors: Name Company Address
Use Cases for Light Communications
Possible Effects of FCC rules to design
Internal Automotive Use Cases
Security capabilities for Light Communications
Light communication Use case: low latency audio in the cockpit
FD TIG Closing Report Date: Authors: May 2018 Name
Month Year doc.: IEEE yy/xxxxr0 September 2018
Light Communications Study Group March 2018 Closing Report
WUR Action Frame Format
Use Cases for Light Communications
doc.: IEEE <doc#>
LC use cases & targets for PAR/CSD
PICS PC items Date: Author: April 2019 May 2015
Data density for Light Communications
PICS CF items Date: Author: April 2019 May 2015
Light Communications Topic Interest Group July 2017 Closing Report
Proposed work items and timeline for the LC SG
PICS PC items Date: Author: April 2019 May 2015
PICS CF items Date: Author: April 2019 May 2015
Light Communications Study Group May 2018 Closing Report
Light Communications Topic Interest Group January 2017 Closing Report
May 2015 doc.: IEEE /0496r1 November 2017
Light Communications Topic Interest Group May 2017 Closing Report
Subject Line for IEEE Ballots
Light Communications considerations for lighting manufacturers
2019 March TGba Closing Report
TGba November 2017 Closing Report
TGba September 2017 Closing Report
Proposed Addition to Evaluation Methodology
Task Group AY September 2017 Closing Report
May 2015 doc.: IEEE /0496r1 July 2017 IEEE TG13 Multi-Gbit/s Optical Wireless Communication September 2017 Closing Plenary report Date:
Possible Action Items Date: Author:
May 2015 doc.: IEEE /0496r1 May 2019 IEEE TG13 Multi-Gbit/s Optical Wireless Communication May 2019 Closing Report Date: Author:
March 2019 Liaison Report Date: Authors: March 2019
May 2015 doc.: IEEE /0496r1 March 2019 IEEE TG13 Multi-Gbit/s Optical Wireless Communication Agenda for the Atlanta Session Date:
Task Group AY May 2016 Closing Report
VLC based Simulation Results in Enterprise and Industrial Environment
IEEE TG13 Partial Evaluation of PM-PHY using TG7r1 Channels
IEEE TG13 Partial Evaluation of PM-PHY using TG7r1 Channels
VLC based Simulation Results in Enterprise and Industrial Environment
May 2015 doc.: IEEE /0496r1 July 2017 IEEE TG13 Multi-Gbit/s Optical Wireless Communication September 2017 Closing Plenary report Date:
MCS table for SC EDMG Date: 2016-November-07 Authors: November 2016
May 2015 doc.: IEEE /0496r1 May 2019 IEEE TG13 Multi-Gbit/s Optical Wireless Communication May 2019 Closing Report Date: Author:
July 2008 Project: IEEE P Working Group for Wireless Personal Area Networks (WPANs) Submission Title: [TG3c Project Plan] Date Submitted: [ July.
TGbb September 2018 Closing Report
Presentation transcript:

Use Cases for 802.11 Light Communications May 2015 doc.: IEEE 802.11-15/0496r1 November 2017 Use Cases for 802.11 Light Communications Date: 2017-11-01 Author: Name Affiliation Address Phone Email Tuncer Baykas Medipol University tbaykas@ieee.org Murat Uysal Özyeğin University muratuysal@ozyegin.edu.tr Emrah Kınav Ford Otosan ekinav@ford.com.tr Ömer Rüştü Ergen rergen@ford.com   Tuncer Baykas Edward Au (Marvell Semiconductor)

Outline Use Cases for LC in 802.11 Ceiling Indoor LC November 2017 Outline Use Cases for LC in 802.11 Ceiling Indoor LC Close Proximity Indoor LC Vehicle to Vehicle LC Infrastructure to Vehicle LC Underwater LC Tuncer Baykas

January 2016 doc.: IEEE 802.11-15/1472r0 November 2017 UC #1 – Ceiling Indoor LC In this use case LC transmitters are located on the ceiling of indoor environments, such as conference rooms, theatres, shopping mall and hospitals. Range: 2.5 to 10 meters, Data rate: 200 Mbps to 1Gbps 802.11 amendments for hybrid use: 802.11ax, 802.11ay and their previous versions Tuncer Baykas Edward Au (Huawei Technologies)

UC #2 – Close Proximity Indoor LC January 2016 doc.: IEEE 802.11-15/1472r0 November 2017 UC #2 – Close Proximity Indoor LC In this use case LC transmitters are located on the walls or on desklamps of an indoor environment. This use case are for secure, peer to peer communicaton. Range: 30 cm to 1 meter, Data rate: 200 Mbps to 1 Gbps 802.11 amendments for hybrid use: 802.11ax, 802.11ay and their previous versions Tuncer Baykas Edward Au (Huawei Technologies)

UC #3 – V2V LC communication January 2016 doc.: IEEE 802.11-15/1472r0 November 2017 UC #3 – V2V LC communication In this use case LC transmitters are located on the vehichle lights to enable V2V communication. The receivers are in the front and at the back of the vehicles. Range: 1 meter to 50 meters, Data rate: 1Mbps to 50 Mbps 802.11 amendments for hybrid use: 802.11p, 802.11ah Tuncer Baykas Edward Au (Huawei Technologies)

UC #4 – Infrastructure to Vehicle (I2V) LC communication January 2016 doc.: IEEE 802.11-15/1472r0 November 2017 UC #4 – Infrastructure to Vehicle (I2V) LC communication In this use case LC transmitters are located on the traffic and street lights. The receivers are in the front and at the back of the vehicles. Range: 3 meters to 50 meters, Data rate: 1Mbps to 50 Mbps 802.11 amendments for hybrid use: 802.11p, 802.11ah Tuncer Baykas Edward Au (Huawei Technologies)

UC #5 – Underwater LC communication January 2016 doc.: IEEE 802.11-15/1472r0 November 2017 UC #5 – Underwater LC communication In this use case LC transmitters are located underwater vehicles and buoys. This use case can be use to extend ranges of 802.11af and 802.11ah systems to underwater communication. Range: 1meter to 100 meters, Data rate: 1Mbps to 50 Mbps 802.11 amendments for hybrid use: 802.11ah, 802.11af Tuncer Baykas Edward Au (Huawei Technologies)