Submission doc.: IEEE 11-13/0177r1 March 2013 Tetsuya Kawanishi, NICT, et al.Slide 1 Proposal of RoF Extension Link Backhaul for Category 4 Date: 2013-03-19.

Slides:



Advertisements
Similar presentations
How to Set Up, Secure and Manage A Network
Advertisements

Doc.: IEEE /655r0 Submission May 2006 Slide 1Scott Lee, et al., Samsung Electronics Use Cases of WLAN for AV Streams Scott Seongwook Lee, Huai-Rong.
Doc.: IEEE /1196r1 Submission Data Rate and Spectrum Requirements for IEEE aj (45 GHz) Date: Authors: Haiming Wang (SEU)Slide.
E-Photon Summer School 1 Optimization of Wavelength Interleaved Radio-over-Fiber Systems Tiago Silveira, António Teixeira, R. Nogueira, P. André, P. Monteiro,
Doc.: IEEE /0153r1 Submission March, 2004 Ami Kanazawa, CRLSlide 1 Project: IEEE P Working Group for Wireless Personal Area Networks (WPANs)
7000 Series - Overview. Wireless Overview Operating Bands Licensing & Guaranteed Service Regulations Guaranteed Bandwidth & Range & link margin.
Doc.: IEEE /0161r1 Submission January 22, 2009 Rolf de Vegt (Qualcomm)Slide ac Usage Models Document Date: Authors:
Channel Sounding for ay
Submission doc.: IEEE 11-13/0177r0 January 2013 Tetsuya Kawanishi, NICT, et al.Slide 1 Proposal of RoF Extension Link Backhaul for Category 4 Date:
July 2015 doc.: IEEE /XXXXr0 July 2015
Transmission Media / Channels. Introduction Provides the connection between the transmitter and receiver. 1.Pair of wires – carry electric signal. 2.Optical.
Submission doc.: IEEE 11-12/0844r0 Slide 1 Non-linear Multiuser MIMO for next generation WLAN Date: Authors: Shoichi Kitazawa, ATR.
Doc.: IEEE /0323r0 SubmissionRon Porat, BroadcomSlide 1 Views on ah Use Cases Date: Authors: March 2011.
Doc.: IEEE /1361r3 Submission Channel Measurement for IEEE aj (45 GHz) Date: Authors/contributors: Haiming Wang (SEU)Slide 1.
Doc.: IEEE /0721r0 Submission WLAN Access Network Using RoF Authors/contributors: Date: May 2014 Wenjing Xu, et al. (BUPT)Slide 1 Name.
TRANSMISSION MEDIA’S BY KULA.
Doc.: IEEE /1145r0 Submission December 2012 Jiamin Chen, HuaweiSlide 1 IEEE aj Usage Models Document Date: Authors/contributor:
Doc.: IEEE /1145r1 Submission November 2012 Jiamin Chen, HuaweiSlide 1 IEEE aj Usage Models Document Date: Author(s)/contributors:
Doc.: IEEE /2371r0 Submission September 2007 Eldad Perahia (Intel)Slide 1 Review of TGn’s Usage Models Date: Authors:

Submission doc.: IEEE 11-14/0586r0 May 2014 Igal Kotzer, General MotorsSlide 1 Automotive Considerations for the Simulation Scenarios Date: 12-May-2014.
Doc.: IEEE 11-13/0554r0 Submission May 2013 Minho Cheong (ETRI)Slide 1 Usage Models for HEW Date: Authors: NameAffiliationsAddressPhone .
Doc.: IEEE /1061r1 Submission September 2015 Kare Agardh, SonySlide 1 Further Use Cases for Next Generation Positioning Date: 2015/09/13 Authors:
Submission doc.: /0929r00 Jim Lansford(CSR), et al Slide 1 Expansion of ac to 6-10GHz Date: Authors: July 2012.
Submission Rolf de Vegt, Qualcomm, et al. July 2009 doc.:IEEE /0849r1 Slide 1 Uplink Intensive Usage Models Date: Authors:
Doc.: IEEE /0795r0 Submission HEW Usage Scenarios Categorization July 2013 Eldad Perahia (Intel)Slide 1 Date: Authors:
Doc.: IEEE /286r3 Submission July, 2006 Noriyasu Kikuchi, Oki Electric Industry Co., Ltd.Slide 1 Project: IEEE P Working Group for Wireless.
1 Tangible Media (Cables) Coaxial –Thinwire –Thickwire Twisted Pair (UTP and STP) Fiber Optic Cable.
Submission doc.: /1320r00 Bo, Sun (ZTE Corp), et al Slide 1 11aj 45GHz Link Budget for use cases discussion Date: Authors: Nov 2012.
Doc.:IEEE /0376r1 Submission March 2009 Minho Cheong, ETRI and Peter Loc, RalinkSlide 1 Proposal for TGac Evaluation Methodology Authors:
Doc.:IEEE /1050r0 Submission September 23, 2009 Samsung Slide 1 Possible Technologies for TGac Mobile Device Support Authors: Date:
Doc.: IEEE /0583r0 Submission March 2009 Mark Grodzinsky, WilocitySlide 1 Amendment to WFA Usage Models Date: Authors:
Submission L. Li, Vinno;Slide 1 Project: IEEE P Working Group for Wireless Personal Area Networks (WPANs) Submission Title: Tamed Spread Spectrum.
Doc.: IEEE /270 Submission July 2003 Liang Li, Helicomm Inc.Slide 1 Project: IEEE P Working Group for Wireless Personal Area Networks (WPANs)
Doc.: IEEE /0786r0 Submission July 2013 Wu TianyuSlide 1 Discussions on System Level Simulation Methodology Date: Authors:
Doc.: IEEE /0568r1 Submission May 2004 Kevin Dick - Nortel Networks Slide 1 Usage Models for ESS Mesh Kevin Dick Kue.
Doc.: IEEE /0834r0 Submission July 2015 Thomas Handte, SonySlide 1 Further Use Cases for Next Generation Positioning Date: 2015/07/13 Authors:
Submission doc.: IEEE /0081r0 October 2015 Alaa Mourad, BMW GroupSlide 1 Wireless Coexistence in the Automotive Environment – System Model Date:
Doc.:IEEE /086r1March 2000 Submission Walt Davis, Motorola Slide 1 Project: IEEE P Working Group for Wireless Personal Area Networks (WPANs)
1. Physical Transmission Transmission Media Wire (guided) Coaxial cable Twisted Pair UTP STP Fiber Optic Wireless (unguided) Radio waves Microwave Infrared.
Doc.: IEEE d Submission March 2014 Atsushi Kanno, NICT, et alSlide 1 Project: IEEE P Working Group for Wireless Personal Area Networks.
Part 3  Transmission Media & EM Propagations.  Provides the connection between the transmitter and receiver. 1.Pair of wires – carry electric signal.
Doc.: IEEE /1044r0 Submission September 2008 Alexander Maltsev, IntelSlide 1 60 GHz WLAN Experimental Investigations Date: Authors:
Doc.: IEEE /0347r0 Submission September, 2003 Kiyoshi Hamaguchi, CRLSlide 1 Project: IEEE P Working Group for Wireless Personal Area Networks.
Doc.: IEEE /2792r0 Submission Nov 8, 2007 De Vegt QualcommSlide 1 Wi-Fi Alliance (WFA) VHT Study Group Usage Models Date: Authors:
Doc.: IEEE /166r0 Submission March 2005 Slide 1 Hiroyuki Nakase, Tohoku Univ. Project: IEEE P Working Group for Wireless Personal Area Networks.
Doc.:IEEE /0789r1 Submission Robert Stacey, Intel July 13, 2009 Slide 1 Technology and Use Cases for TGac Authors: Date:
Doc.: IEEE /2988r0 Submission December 20, 2007 Myles / De Vegt Wi-Fi AllianceSlide 1 Wi-Fi Alliance (WFA) VHT Study Group Usage Models Date:
Doc.: IEEE /0176r0 Submission Jan 2013 Bo Sun, ZTE/CWPANSlide 1 Date: Presenter: Proposal of Channelization for aj.
Date of download: 6/25/2016 Copyright © 2016 SPIE. All rights reserved. Photograph (top) and structure (bottom) of the transmitter module. Figure Legend:
Doc.: IEEE /0161r0 Submission January 21, 2009 Rolf de Vegt (Qualcomm)Slide ac Usage Models Starter Document Date: Authors:
Doc.:IEEE /206r1July 2000 Submission Walt Davis, Motorola Slide 1 Project: IEEE P Working Group for Wireless Personal Area Networks (WPANs)
<month year> doc.: IEEE xxxx-00-0thz July 2014
WUR Link Budget Analysis
Mapping WFA Usage Models to Operating Bands
On the Channel Model for Short Range Communications
VHT SG Report to EC Date: Authors: July 2008 April 2007
Technology and Use Cases for TGac
In-band interference effects on UWB
VHT60 Tutorial Date: Authors: July 2008 April 2007
6-10GHz Rate-Range and Link Budget
VHT SG Report to EC Date: Authors: July 2008 April 2007
Technology and Use Cases for TGac
VHT60 Tutorial Date: Authors: July 2008 April 2007
Response to c Questions
IMT.Advanced aligned scope proposal
Date Submitted: [29 August 2016]
Link Budget Analysis Date: Authors: November 2015
June, 2006 doc.: IEEE /xxxr0 June, 2006
Presentation transcript:

Submission doc.: IEEE 11-13/0177r1 March 2013 Tetsuya Kawanishi, NICT, et al.Slide 1 Proposal of RoF Extension Link Backhaul for Category 4 Date: Authors:

Submission doc.: IEEE 11-13/0177r1 March 2013 Tetsuya Kawanishi, NICT, et al.Slide 2 Abstract RoF (Radio on Fiber) extension link is proposed as one of usage models of 11aj backhaul. RoF extension link can extend wireless access area to the different location without signal degradation and frequency interference. RoF extension link has broadband transmission capability because of O/E and E/O broadband conversion characteristics and can transmit signals at 45-GHz and 60-GHz bands simultaneously. The additional experimental results of RoF extension link are presented. The aim of this contribution is to add usage model 4c in the IEEE aj Usage Models Document IEEE /1145r2.

Submission doc.: IEEE 11-13/0177r1 March 2013 Tetsuya Kawanishi, NICT, et al.Slide 3 Overview of WFA VHT usage models for ad Category#Usage Model 1.Wireless Display1aDesktop Storage & Display 1bProjection to TV or Projector in Conf Rom 1cIn room Gaming 1dStreaming from Camcorder to Display 1eBroadcast TV Field Pick Up 1fMedical Imaging Surgical Procedure Support 2.Distribution of HDTV2aLightly compressed video streaming around home 2bCompr. video steaming in a room/ t.o. home 2cIntra Large Vehicle (e.g. airplane ) Applications 2dWireless Networking for Small Office 2eRemote medical assistance 3.Rapid Upload / Download3aRapid Sync-n-Go file transfer 3bPicture by Picture viewing 3cAirplane docking 3dMovie Content Download to car 3ePolice / Surveillance Car Upload 4.Backhaul4aMulti-Media Mesh backhaul 4bPoint to Point backhaul 5.Outdoor Campus /Auditorium5aVideo demos / telepresence in Auditorium 5bPublic Safety Mesh 6.Manufacturing Floor6aManufacturing floor automation 7.Cordless computing7aWireless IO / Docking

Submission doc.: IEEE 11-13/0177r1 March 2013 Tetsuya Kawanishi, NICT, et al.Slide 4 Category 4: Backhaul a.Multi-Media Mesh Backhaul Hotspot Enterprise Small Office or Home Campus-wide deployments Municipal deployments b.Point-to-Point Backhaul c.RoF* Extension Link Backhaul * Radio on Fiber 4

Submission doc.: IEEE 11-13/0177r1 March 2013 Tetsuya Kawanishi, NICT, et al. Slide 5 Usage Model 4c: RoF Extension Link Backhaul Projector RoF Extension Link 1st 1st floor 2nd floor Access Point O/E&E/O devices

Submission doc.: IEEE 11-13/0177r1 March 2013 Tetsuya Kawanishi, NICT, et al.Slide 6 6 Usage Model 4c: RoF Extension Link Backhaul Pre-Conditions: Wireless zones are connected via RoF extension link. The individual wireless zones can support high-speed- data traffic requirements that are limited by the VHT link capabilities. Application: Traffic is bidirectional and is comprised of subcarriers which include data, voice, video, and any kinds of signals. These subcarriers are equivalent to radio frequencies, i.e. either 45GHz or 60 GHz bands. RoF extension link extends coverage areas without any performance degradation of traffic requirements. Environment: Environment can be home, office, manufacturing floor, etc. Point-to-point link distance can be extended up to 20 km due to low insertion loss of optical fiber cables. Typically locations are Non-Line-of-Sight. No frequency interferences can be managed by use of optical fiber cable. Traffic Conditions: RoF extension link can carry any type of traffic due to broadband transmission capability of RoF devices. End of each link is heavily loaded with equal amount of traffic in both directions. Use Case: 1.Wirelessly separated spaces such as rooms of houses surrounded by concretes are directly connected through RoF extension link without any digital signal processing units. 2.In spite of physical and electromagnetic separation, one wireless zone is extended to another wireless zone which has the same characteristics of the original one. 3.Users at different locations can take advantage of broadband multi-media applications.

Submission doc.: IEEE 11-13/0177r1 RoF システム・実験概略 100-kHz-linewidth tunable laser Mach-Zehnder Optical modulator Optical band-pass Filter 1 Er-doped fiber amplifier Photodetector Optical band-pass Filter 2 RoF Tx RoF Rx Vector network analyzer Optical fiber 0~15 km Tunable laser: Yenista optics OSICS TLS-AG (Power stability: ±0.03 dB) MZ modulator: GIGOPTIX LX8901 (3-dB BW:>65 GHz) Photodetector: u2t photonics XPDV4120 (3-dB BW:100 GHz) EDFA: Amonics Burst-mode EDFA (Sat. power 20 dBm, NF:<5.5 dB) Bandpass filter1: BW > 1 nm for generation of single sideband signal Bandpass filter2: BW ~ 1 nm for suppression of ASE noises from EDFA 2013/1/18 Slide dBm March 2013 Tetsuya Kawanishi, NICT, et al. Experimental Setup of RoF Link

Submission doc.: IEEE 11-13/0177r1 RoF システム f 特測定結果 Amplitude Deviation: < 2 dBp-p at GHz ~ 2 dBp-p at GHz Slide 8 March 2013 Tetsuya Kawanishi, NICT, et al.

Submission doc.: IEEE 11-13/0177r1 RoF システム ファイバ伝送後 f 特比較 Frequency response of RoF link at GHz and GHz bands Slide 9 March 2013 Tetsuya Kawanishi, NICT, et al.

Submission doc.: IEEE 11-13/0177r1 60GHz Tx Laser Optical modulator Optical amplifier Optical BPF 60GHz Rx 70-GHz-BW photodiode IF IN. IF OUT. E/O convertorO/E convertor Coaxial cable Optical fiber Blockdiagram of Single-Side-Band Signal Transmission Experiment of RoF Extension Link using IEEE802.11ad Signal RoF Extension link March 2013 Tetsuya Kawanishi, NICT, et al.Slide 10

Submission doc.: IEEE 11-13/0177r1 60-GHz π/2-BPSK Signal Transmission Experimental Results (1) RF Back to Back 180m RoF Extension link EVM: 3.3% (-29.6dB)EVM: 12.7% %(-17.9dB) March 2013 Tetsuya Kawanishi, NICT, et al.Slide 11

Submission doc.: IEEE 11-13/0177r1 Ch.4 (fc=64.80 GHz) 60-GHz π/2-BPSK Signal Transmission Experimental Results (2) Required spectrum mask at channel 4 of ad March 2013 Tetsuya Kawanishi, NICT, et al.Slide 12

Submission doc.: IEEE 11-13/0177r1 60-GHz 16QAM Signal Transmission Experimental Results EVM : 14% (-17dB) Ch.4 (fc=64.80 GHz) March 2013 Tetsuya Kawanishi, NICT, et al.Slide 13

Submission doc.: IEEE 11-13/0177r1 EVM (Error Vector Magnitude) vs. Fiber Length EVM (%) Transmission length (m) March 2013 Tetsuya Kawanishi, NICT, et al.Slide 14

Submission doc.: IEEE 11-13/0177r1 Delay Time of RoF Extension Link Fiber length (m) Delay (ns) RoF Back to Back March 2013 Tetsuya Kawanishi, NICT, et al.Slide 15

Submission doc.: IEEE 11-13/0177r1March 2013 Tetsuya Kawanishi, NICT, et al.Slide 16 Standards related to Indoor Use of Optical Fiber Cable IEC Ed.4.0 Optical fibers – Part 40: Product specifications – Sectional specification for category A4 multimode fibers Technical Paper published by Optoelectronic Industry and Technology Development Association (Japan ) TP02/BW Optical fiber distribution system for apartment houses in FTTH TP01/BW Optical fiber distribution system for detached houses in FTTH OITDA/TP03/BW Optical fiber distribution system for customer premises

Submission doc.: IEEE 11-13/0177r1March 2013 Tetsuya Kawanishi, NICT, et al.Slide 17 Summary RoF extension link backhaul was proposed for Category 4 (Backhaul) RoF extension link backhaul can extend wireless access area through optical fiber without any change of system requirement. Data transmission experiment of RoF extension link using ad signal were presented and EVM of transmitted signals are less 14 %. Additional delay time is about 350 ns at a fiber cable length of 50 m Dynamic range of RoF extension link will be discussed at the next meeting. Acknowledgments: This work was supported in part by “The research and development project for the expansion of radio spectrum resources" of the Ministry of Internal Affairs and Communications in Japan