Effective radiation pattern

Slides:



Advertisements
Similar presentations
$ Network Support for Wireless Connectivity in the TV Bands Victor Bahl Ranveer Chandra Thomas Moscibroda Srihari Narlanka Yunnan Wu Yuan.
Advertisements

MIMO Systems for MANETs
Vehicle-infrastructure integration: creating co-operative mobility systems and services Hearing EU Parliament, 22 January 2009 Hermann Meyer, CEO.
VSMC MIMO: A Spectral Efficient Scheme for Cooperative Relay in Cognitive Radio Networks 1.
SUCCESSIVE INTERFERENCE CANCELLATION IN VEHICULAR NETWORKS TO RELIEVE THE NEGATIVE IMPACT OF THE HIDDEN NODE PROBLEM Carlos Miguel Silva Couto Pereira.
1 Link Characteristics in Sensor Networks. 2 Why Such a Study? (in)validate whether the basic model used in design is accurate or not  Remember you have.
Virtual Traffic signs Driver Attention System Final Presentation Students : David Eyal Handaly Gidi Semester : Spring 2004 Instructor : Kats Idan Cooperation.
Hazard and Incident Warning « Majority of events occurring on the road represent a danger for road users » By transmitting road events and road status.
2002 MURI Minisymposium Cooperative Control of Distributed Autonomous Vehicles in Adversarial Environments 2002 MURI Minisymposium Ameesh Pandya Prof.
Wireless Transmission Fundamentals (Physical Layer) Professor Honggang Wang
1. 2  What is MIMO?  Basic Concepts of MIMO  Forms of MIMO  Concept of Cooperative MIMO  What is a Relay?  Why Relay channels?  Types of Relays.
Cooperative Diversity Scheme Based on MIMO-OFDM in Small Cell Network Dong-Hyun Ha Sejong University.
Co-operative Systems for Road Safety “Smart Vehicles on Smart Roads”
Project 3.2 Grid Integration Requirements, Standards, Codes and Regulations Tho Le-Ngoc, McGill University Students: Dung Ho, Christopher.
Joint PHY-MAC Designs and Smart Antennas for Wireless Ad-Hoc Networks CS Mobile and Wireless Networking (Fall 2006)
Wireless standards Unit objective Compare and contrast different wireless standards Install and configure a wireless network Implement appropriate wireless.
Wireless Mesh Network 指導教授:吳和庭教授、柯開維教授 報告:江昀庭 Source reference: Akyildiz, I.F. and Xudong Wang “A survey on wireless mesh networks” IEEE Communications.
Overview of Research Activities Aylin Yener
A Survey of Spectrum Sensing Algorithm for Cognitive Radio Applications YaGun Wu netlab.
1 Wireless Networks and Services 10 Years Down the Road Ross Murch Professor, Electronic and Computer Engineering Director, Centre for Wireless Information.
S MART A NTENNA B.GANGADHAR 08QF1A1209. ABSTRACT One of the most rapidly developing areas of communications is “Smart Antenna” systems. This paper deals.
Lunar Surface EVA Radio Study Adam Schlesinger NASA – Johnson Space Center October 13, 2008.
Network and Systems Laboratory nslab.ee.ntu.edu.tw Branislav Kusy, Christian Richter, Wen Hu, Mikhail Afanasyev, Raja Jurdak, Michael Brunig, David Abbott,
SAFENET The OSU SAFENET Project The Ohio State University Center for Automotive Research & Center for Intelligent Transportation Research.
1 WP2: Communications Links and Networking – update on progress Mihael Mohorčič Jozef Stefan Institute.
Research on the Connected Car Hans-J. Reumerman Philips Technology Research Laboratories Aachen Connectivity Systems Application Industry relations Technology.
Internet of Things. IoT Novel paradigm – Rapidly gaining ground in the wireless scenario Basic idea – Pervasive presence around us a variety of things.
Vehicle Traffic Simulator and Intersection Collision Warning System Wireless repeater Rebroadcast received packets (once) Packet transmission behavior.
Energy Consumption Perspective on Coded Cooperative Systems Liwen Yu and Andrej Stefanov.
WOMEN Project W ireless 8 O 2.16 M ulti-antenna m E sh N etworks University of Roma “La Sapienza” + University of Roma “Tor Vergata” University of Napoli.
Department of Electrical Engineering, National Taiwan University of Science and Technology EURASIP Journal on Wireless Communications and Networking.
-Internet On Road. INTRODUCTION Driving means constantly changing location. This, in turn, means a constant demand for information on the current location.
Mobile Communications Labs review. Lab1-2-3 Lab 1 –Calculation in logarithmic unit (dB) –Receiver sensitivity –Channel capacity Lab 2 –Link Budget Analysis.
EE 525 Antenna Engineering
A brief introduction to IoT gateway
Road Safety Behaviour Symposium: New technology, new connectivity
Architecture and Algorithms for an IEEE 802
4G-WIRELESS NETWORKS PREPARED BY: PARTH LATHIGARA(07BEC037)
Jérôme Härri, Fethi Filali, Christian Bonnet
Jack Pokrzywa Director Ground Vehicle Standards, SAE International
Reconfigurable Antenna by Ahmed Alawneh, Mohammed Mansour and Alaa Rawajbeh The supervisor: Dr. Allam Mousa   2014 An-Najah National University.
Advanced Wireless Transmission for Skin Patches and Implants
Fang-Lin Chao and Ja-Der Lin
Mobicom ‘99 Per Johansson, Tony Larsson, Nicklas Hedman
An Enhancement of WirelessHART Protocol
SMART ANTENNA.
System-Level simulation Inter-cell RRM Multi-cell RRM
WP 2. Enabling 5G: Case Studies. Technologies under study.
Multi-channel, multi-radio wireless networks
Evaluation Model for LTE-Advanced
User Interference Effect on Routing of Cognitive Radio Ad-Hoc Networks
Evaluation of a Novel Low Complexity Smart Antenna for Wireless LAN Systems T.J. Harrold*, D.C. Kemp†, M.A. Beach*, C. Williams*, M. Philippakis† and M.W.
Maritime Broadband Radio
Smart Antenna Rashmikanta Dash Regd.no: ETC-A-52
Wireless Communication Co-operative Communications
Communication Systems.
Active Beam MobiRake TDMA/OFDM Radio
Wireless Communication Co-operative Communications
Environmental Data Exchange in Cooperating Driving Systems
Intelligent Transport Systems
Project: IEEE P Working Group for Wireless Personal Area Networks (WPANs) Submission Title: [The Usage of Polarized Antenna System] Date.
Differences between WSN & MANET By: Dana Alotaibi.
Multi-channel, multi-radio
Motion-Aware Routing in Vehicular Ad-hoc Networks
Protocols.
EE 525 Antenna Engineering
Developing Vehicular Data Cloud Services in the IoT Environment
SMART ANTENNA.
Protocols.
Presentation transcript:

Effective radiation pattern CAPTIV (Cooperative strAtegies for low Power wireless Transmissions between Infrastructure and Vehicles) is a research program on new mobile communication techniques for driving assistance and road users security. Cooperative communications Radio Channel Profile Energy efficiency Total energy (mJ) MIMO measurements Multi-antenna (MIMO) Techniques between network nodes Distance (m) Uncorrelated fadings First prototype Functions Road signs detection and identification Traffic problem detection and warning Crossroads configuration detection Dangerous spots processing Expected feedbacks On-ground concept validation Parameters tuning Zigbee solution characterization Range, mobility, reactivity, data rate Driving simulator Algorithms and protocols validation before implantation on the demo Driver behaviour evaluation “Smart” road signs Radio transceivers Energetic autonomy Transparent Antennas Laser Etching ITO thin layer 2 monopole antennas Frequency range : 2,45 GHz Gain = +1dB Effective radiation pattern Simulation