Content. Basics of UWB Technologies - Utilization of Wide Spectrum - History and Recent Trend of UWB UWB

Size: px
Start display at page:

Download "Content. Basics of UWB Technologies - Utilization of Wide Spectrum - History and Recent Trend of UWB UWB"

Transcription

1 ontent Basics o UWB Technologies - Utilization o Wide Spectrum - What is UWB History and Recent Trend o UWB Principle o UWB Application o UWB Technical Issues or Antennas & RF ircuits Intererence Problem onclusion 1 UWB Ultra Wide Band (more than 25% relative bandwidth transmission) By Using Short Impulse or Monocycle Signals, ommunication/sensing/ Imaging technologies In 2002 F allowed an use o UWB spectrum Physical Layer Technologies adopted or IEEE arrier-less: IF ircuits, Mixer, etc are not required Originally, Military Radar/ommunication Technology History and Recent Trend o UWB 1901 Marconi s rontier work on wireless communication is an Impulse transmission Time Domain Inc. etc, asked F to use UWB F started a technical review on UWB. 2002, 2 F allowed a commercial use or UWB. 2002, 5 First International onerence on UWB 2002, 9 UWB SG organized by MPT, Japan 2 3 1

2 UWB Technology Basics: Wide Band & Low Power Density Spectrum Mask by F 4 5 Equivalent Noise Temperature Multi-Band OFDM proposed by Intel -41.3dBm/MHz ^-13 [Joule] kt:power Spectrum Density T= ^9 [ ] Too High Temperature!! 6 7 2

3 UWB s Application Imaging Systems Ground Penetrating Radar Wall-Imaging, Through-Wall Imaging Medical-Imaging Vehicular Radar Systems ollision Avoidance Radar ommunication Systems Short Range (~10m) ommunications WPAN (Wireless Personal Network) Xtreme Spectrum s View o Home Networking Nodes orm a mesh to extend range throughout house Prototypes by Venture ompanies Time Domain (From 1989) Pulse On 200 Xtreme Spectrum Inc. Data Rate 100Mbps (High Speed) Transmission Power 200mW (Low Power) Broad Band Transmission hannel apacity S Where Upper Bound : signal power : noise power : bandwidth W 0 10 N W N 0 W log2 1 S N W log 21 S WN0 : noise power spectrum density S ln 2 N S lim ln 2 N

4 Low Power Transmission by Wide Band Principle o UWB Transmission hannel apacity is a monotonic increasing unction o bandwidth W or given S and N_0 But there is an upper bound For thermal noise N_0 ( Power spectrum density ) = kt k : Boltzmann constant,t : Temperature For T=300 K N_0= -174dBm/Hz And or =1Gbps S=-84dBm is enough Modulation PAM (Amplitude) OOK (ON/OFF) PPM (Time Position) Bi-Phase arrier-less Transmission Broad banding TM-UWB (Time-Modulated) DS-UWB (Direct Sequence Phase oding) UWB Technology Basics: Transmitting Inormation UWB Transmitter

5 UWB Receiver Unbalance in TX and RX TX is simple, and low-cost. RX is complicated due to high-speed time domain processing. Template pulse waveorm should be adaptively modiied including channel characteristics or Matched Filtering. Frequency Domain Processing Time Domain Processing Amplitude/Phase ontrol Amplitude/Delay ontrol Matched Filter oncept Transmitting Pulse Waveorm : s( Receiving Pulse Waveorm : r(=s(+n( Filtering : Sampling and decision Optimum Filtering or Maximizing SNR H(ω)=S(ω)*exp(-ωTs) Technical Issues on Antenna and RF ircuit Wide Band Antenna Low Eiciency, Diamond Dipole,OTAB High Precision Timer (Pico second order) High Speed Multipliers, orrelators Variable Delay Line Wide Band Front-end LNA, RF BPF

6 Broadband Multipliers/Ampliiers Gilbert ell (Dierential Multiplier) Si-Ge or MOS Devices are suitable or this application. Front-end Multipliers/Ampliiers are key components V haracteristics o Step Recovery Diode Pulse Generator ircuit

7 Pulse Waveorm Broad Band BPF Transmission/Relection haracteristics Group Delay haracteristics

8 OTAB Diamond Dipole (2001, APS) Small-size Broad Band Antenna TR Receivers

9 a t b Square (Power) Detector Multiplier? t 2 : 2 a t b t at bt 4 :SquareDetection Linear Processing 2 Intererence Problem UWB Narrow Band ommunication Systems (including GPS) 41.3dBm/MHz Allowable Radiation Power rom Electronics Equipments, e.g. P Narrow Band ommunication Systems UWB? oding Technique over Frequency Domain hannel Modeling or UWB hannel characteristics LEAN Algorithm or lustering and Modeling Measured propagation characteristics are to be de-convolved into antennas and channel characteristics. Broad band/ High speed measurement systems are also to be developed in Frequency/ Time Domain. Fading or Shadowing? Not Frequency Flat but Frequency Selective Pulse distortion Increase o BER

10 MIMO or UWB Time Domain beam/null orming should be developed or UWB-MIMO. Delay ontrol onventional beam/null orming has been done in Frequency Domain. Phase ontrol Prototype o IR UWB Millimeter-wave Region 10 Gps Data Rate OOK Modulation

11

12

13 48 49 onclusion UWB is a challenging theme or device/communication/signal processing researchers and engineers. High-speed and precise signal processing devices and algorithms are necessary in time domain. Nonlinearity due to large peak value should be considered. Narrow Band transmission arrier-less transmission. Frequency Domain Time Domain Processing Multiple Access Perormance o TR-UWB System Using a ombined PPM and DMPM

14 ontent Background Motivation Multi-user system or PPM-DMPM TR-UWB Receiver Simulation result and Discussion onclusion Background Ultra wide-band (UWB) technology has recently emerged as a promising candidate or high throughput short range wireless communication system. UWB system is characterized by low emission, high data rates and spectrum reuse. Frame period TR-UWB Signal T p Wireless Design Microwave engineering, March 2005 Later, Transmit-Reerence UWB (TR-UWB) approach has been envisioned as a promising eective method to avoid channel estimation. However, at least two pulses are necessary or transmitting one data bit that lead to decrease data rate o the system. Time (ns) Motivation Other research Our research 1 st Pulse Gen Input data d(i) 2 nd Pulse Gen DTR UWB MPM TR-UWB... Switching L th Pulse Gen p 1 ( p 2 ( p L ( M bits s( X Modulation BPF N bits Delay Variable step delay By using the orthogonal pulses, the system can transmit more data during the same number o pulses. PPM DMPM PPM-DMPM or DPM More data bits can be transmitted by modulating the type, polarity and position. tr( Multi-user system or TR-UWB Time Hopping (TH) is one technique to randomizing the pulse train o UWB system. Each element o the hopping T sequence { (k) } is uniormly distributed on {0,1,2,,N u -1} in order to provide the multiple access capability T Single user Multiple access t T d p t T Td p ( ) ( s ( ) is the chip period 54 2,3, 4,1,... TR k k k k t T c d p t T c Td p ( ) ( ) ( ) ( ) ( ) ( ( k) s ( ) TR Where k c ) ( is the hopping sequence T T 55 14

15 Multiple access or TH-PPM-DMPM TR-UWB system Receiver r( s( h( n( T T s DMPM s DPM ( ( dd,1 p ( t T c T dd dd dd c ) (, 2,,3,...,, m1 ) dd,1 p ( t T c ( dd dd dd dd, m2,..., dd, mn1)) (,,..., ) In order to prevent interrame intererence and inter chip intererence u TH-TR UWB TH-DMPM TH-PPM-DMPM ( N 1) T T max P ( k) ( k) p( t T c ) d p( t T c T d ( k) s ( ) TR P T max T d Tmds, 2,3 T d Tmds, m1 ( N 1) T T T u Tmds P mds ( N 1) T T max u P max Tmds Tmds r( r( Auto-correlation Receiver Shit orrelation Receiver opt T delay T + delay Integrator T - opt delay Integrator For TR and PPM DTR-UWB Integrator Data decision d (i) For MPM and DMPM TR-UWB I Data decision d (i) ( i) r( t T ) r( dt ( i) I ( i) d ( i) sign ( ( i)) r( t T ) r( dt d( i) Table( I, ) c r( t T ) r( dt c c opt opt Receiver (2) For DPM TR-UWB The number o shit correlation receiver have been used as the number o position (P) that used or modulation. ci T T T d orr corr c 1, I ( i) r( t 1 opt ) r( dt ( i) D 11 Int r( t Td ) r( dt Multi-user ( i) r( t Td ) r( dt ci Td 1,I DD 1 Int 1, ( i) r( t 1 opt ) r( dt 1, d ( i) sign ( ( i)) D 22 Int D T 2,I d(i) c A p, I ( i) r( t p opt ) r( dt Shit correlation Receiver r( DD 2 Int T ci orr 2, T c orr A ( i, ) p, ( i) r( t p opt ) r( dt I ( i, ) r ( t ) r ( t T ) dt, r ( t ) r ( t T I ci 1 ci T ) dt, ci Multi-user T ci orr corr D Pp Int ( i, ) r ( r ( t T ) dt ( i, ) r ( t ) r ( t T c i 1 c i T ) dt P,I ci DD P Int d( i,1,..., N M 1) p P, Table( 1, I, 1,,..., p, I, p, ) d ( i) Table ( I, ) Multi-user system or PPM-DMPM The hopping sequence and chip period have to be considered in the receiver. Auto-correlation Receiver 15

16 Simulation Speciication Pulse Modulation Gaussian and Rayleigh monocycle PPM and DPM Pulse period 0.5 ns hip period 1-20 ns Frame period ns Number chips per rame (Nc) 10, 20 Filter Bandpass ( GHz) hannel S-V model with NLOS 1-4 m (M2) BER Simulation result and Discussion (1) BER when rame period = 100 ns TR, 1user 10-3 PPM PPM DMPM 5 users 10-4 TR, 5 users PPM PPM DMPM 10-5 TR, 10 users PPM 1 user PPM DMPM E b /N o (db) 10 users By using PPM-DMPM, the system The error loor has occurred in all o the decrease the required E b /N 0 by 4-6 db. system when the number o user increased. For 5 users case, the error loor has MAI (Multiple Access Intererence) dominates occurred in case o short rame period, 100 the perormance as the number o user ns (let graph). increase. 60 BER BER when rame period = 300 ns TR,1 user PPM MPM PPM DMPM TR,5 users PPM MPM PPM DMPM TR,10 users PPM MPM PPM DMPM 1 user E b /N 0 (db) 10 users 5 users 61 Throughput (Mbps) Simulation result and Discussion (2) Throughput perormance when rame period = 300 ns TR, 1 user PPM PPM MPM PPM DMPM TR, 10 users PPM PPM MPM PPM DMPM E b /N o (db) PPM-MPM and PPM-DMPM can achieve its maximum throughput at E b /N 0 o about db. PPM-MPM and PPM-DMPM can provide better throughput perormance than conventional system. Especially, PPM-DMPM needs the lower required E b /N 0 than PPM- MPM about 2 db. Simulation result and Discussion (3) This result shows the system capacity with BER (error loor) = Total throughput perormance in both case o proposed systems are better than conventional system. Throughput characteristic o all system are similar to each other because o using the PPM-DMPM can provide more system capacity than other TR-UWB in both o single user and multiple access system because o more transmitted data bits per rame. same multiple access

17 onclusion By using SR, the proposed system can achieve the excellent error and total throughput perormance o the system. When rame period has become longer, although the error perormance has been improved, the maximum data rate o the system will be decreased. By using the proposed system, PPM-DMPM TR-UWB, more total throughput has been achieved, e.g. TR-UWB PPM PPM-DMPM For single user 70 Mbps 115 Mbps 240 Mbps For multi-users 40 Mbps 85 Mbps 185 Mbps 64 17

Content. Basics of UWB Technologies - Utilization of Wide Spectrum - History and Recent Trend of UWB UWB

Content. Basics of UWB Technologies - Utilization of Wide Spectrum - History and Recent Trend of UWB UWB ontent Basics o UWB Technologies - Utilization o Wide Spectrum - What is UWB History and Recent Trend o UWB Principle o UWB Application o UWB Technical Issues or Antennas & RF ircuits Intererence Problem

More information

UWB Hardware Issues, Trends, Challenges, and Successes

UWB Hardware Issues, Trends, Challenges, and Successes UWB Hardware Issues, Trends, Challenges, and Successes Larry Larson larson@ece.ucsd.edu Center for Wireless Communications 1 UWB Motivation Ultra-Wideband Large bandwidth (3.1GHz-1.6GHz) Power spectrum

More information

Optimizing Reception Performance of new UWB Pulse shape over Multipath Channel using MMSE Adaptive Algorithm

Optimizing Reception Performance of new UWB Pulse shape over Multipath Channel using MMSE Adaptive Algorithm IOSR Journal o Engineering (IOSRJEN) ISSN (e): 2250-3021, ISSN (p): 2278-8719 Vol. 05, Issue 01 (January. 2015), V1 PP 44-57 www.iosrjen.org Optimizing Reception Perormance o new UWB Pulse shape over Multipath

More information

Channel-based Optimization of Transmit-Receive Parameters for Accurate Ranging in UWB Sensor Networks

Channel-based Optimization of Transmit-Receive Parameters for Accurate Ranging in UWB Sensor Networks J. Basic. ppl. Sci. Res., 2(7)7060-7065, 2012 2012, TextRoad Publication ISSN 2090-4304 Journal of Basic and pplied Scientific Research www.textroad.com Channel-based Optimization of Transmit-Receive Parameters

More information

The Measurement and Characterisation of Ultra Wide-Band (UWB) Intentionally Radiated Signals

The Measurement and Characterisation of Ultra Wide-Band (UWB) Intentionally Radiated Signals The Measurement and Characterisation of Ultra Wide-Band (UWB) Intentionally Radiated Signals Rafael Cepeda Toshiba Research Europe Ltd University of Bristol November 2007 Rafael.cepeda@toshiba-trel.com

More information

Chapter 4 Radio Communication Basics

Chapter 4 Radio Communication Basics Chapter 4 Radio Communication Basics Chapter 4 Radio Communication Basics RF Signal Propagation and Reception Basics and Keywords Transmitter Power and Receiver Sensitivity Power - antenna gain: G TX,

More information

Overview. Measurement of Ultra-Wideband Wireless Channels

Overview. Measurement of Ultra-Wideband Wireless Channels Measurement of Ultra-Wideband Wireless Channels Wasim Malik, Ben Allen, David Edwards, UK Introduction History of UWB Modern UWB Antenna Measurements Candidate UWB elements Radiation patterns Propagation

More information

Ultra Wideband Signals and Systems in Communication Engineering

Ultra Wideband Signals and Systems in Communication Engineering Ultra Wideband Signals and Systems in Communication Engineering Second Edition M. Ghavami King's College London, UK L. B. Michael Japan R. Kohno Yokohama National University, Japan BICENTENNIAL 3 I CE

More information

C th NATIONAL RADIO SCIENCE CONFERENCE (NRSC 2011) April 26 28, 2011, National Telecommunication Institute, Egypt

C th NATIONAL RADIO SCIENCE CONFERENCE (NRSC 2011) April 26 28, 2011, National Telecommunication Institute, Egypt New Trends Towards Speedy IR-UWB Techniques Marwa M.El-Gamal #1, Shawki Shaaban *2, Moustafa H. Aly #3, # College of Engineering and Technology, Arab Academy for Science & Technology & Maritime Transport

More information

UWB Applications and Technologies

UWB Applications and Technologies UWB Applications and Technologies Presentation for PersonalTelco Project Nathaniel August VTVT (Virginia Tech VLSI for Telecommunications) Group Department of Electrical and Computer Engineering Virginia

More information

EITN85, FREDRIK TUFVESSON, JOHAN KÅREDAL ELECTRICAL AND INFORMATION TECHNOLOGY. Why do we need UWB channel models?

EITN85, FREDRIK TUFVESSON, JOHAN KÅREDAL ELECTRICAL AND INFORMATION TECHNOLOGY. Why do we need UWB channel models? Wireless Communication Channels Lecture 9:UWB Channel Modeling EITN85, FREDRIK TUFVESSON, JOHAN KÅREDAL ELECTRICAL AND INFORMATION TECHNOLOGY Overview What is Ultra-Wideband (UWB)? Why do we need UWB channel

More information

Research in Ultra Wide Band(UWB) Wireless Communications

Research in Ultra Wide Band(UWB) Wireless Communications The IEEE Wireless Communications and Networking Conference (WCNC'2003) Panel session on Ultra-wideband (UWB) Technology Ernest N. Memorial Convention Center, New Orleans, LA USA 11:05 am - 12:30 pm, Wednesday,

More information

UWB Channel Modeling

UWB Channel Modeling Channel Modeling ETIN10 Lecture no: 9 UWB Channel Modeling Fredrik Tufvesson & Johan Kåredal, Department of Electrical and Information Technology fredrik.tufvesson@eit.lth.se 2011-02-21 Fredrik Tufvesson

More information

(2) (3) (4) (5) (6) (7) (8)

(2) (3) (4) (5) (6) (7) (8) Design and Analysis of a High Data Rate Transceiver using Novel Pulses for IR-UWB PLAN Khalid A. S. Al-Khateeb, Muaayed F. Al-Rawi Electrical and Computer Engineering Department International Islamic University

More information

Performance Analysis of Different Ultra Wideband Modulation Schemes in the Presence of Multipath

Performance Analysis of Different Ultra Wideband Modulation Schemes in the Presence of Multipath Application Note AN143 Nov 6, 23 Performance Analysis of Different Ultra Wideband Modulation Schemes in the Presence of Multipath Maurice Schiff, Chief Scientist, Elanix, Inc. Yasaman Bahreini, Consultant

More information

Page 1. Outline : Wireless Networks Lecture 6: Final Physical Layer. Direct Sequence Spread Spectrum (DSSS) Spread Spectrum

Page 1. Outline : Wireless Networks Lecture 6: Final Physical Layer. Direct Sequence Spread Spectrum (DSSS) Spread Spectrum Outline 18-759 : Wireless Networks Lecture 6: Final Physical Layer Peter Steenkiste Dina Papagiannaki Spring Semester 2009 http://www.cs.cmu.edu/~prs/wireless09/ Peter A. Steenkiste 1 RF introduction Modulation

More information

Differential and Single Ended Elliptical Antennas for GHz Ultra Wideband Communication

Differential and Single Ended Elliptical Antennas for GHz Ultra Wideband Communication Differential and Single Ended Elliptical Antennas for 3.1-1.6 GHz Ultra Wideband Communication Johnna Powell Anantha Chandrakasan Massachusetts Institute of Technology Microsystems Technology Laboratory

More information

Channel Modeling ETI 085

Channel Modeling ETI 085 Channel Modeling ETI 085 Overview Lecture no: 9 What is Ultra-Wideband (UWB)? Why do we need UWB channel models? UWB Channel Modeling UWB channel modeling Standardized UWB channel models Fredrik Tufvesson

More information

Project: IEEE P Working Group for Wireless Personal Area Networks N

Project: IEEE P Working Group for Wireless Personal Area Networks N Project: IEEE P802.15 Working Group for Wireless Personal Area Networks N (WPANs( WPANs) Title: [IMEC UWB PHY Proposal] Date Submitted: [4 May, 2009] Source: Dries Neirynck, Olivier Rousseaux (Stichting

More information

SIGNAL PROCESSING FOR COMMUNICATIONS

SIGNAL PROCESSING FOR COMMUNICATIONS Introduction ME SIGNAL PROCESSING FOR COMMUNICATIONS Alle-Jan van der Veen and Geert Leus Delft University of Technology Dept. EEMCS Delft, The Netherlands 1 Topics Multiple-antenna processing Radio astronomy

More information

Ultra Wide Band Signal Simulations Using FDTD Method

Ultra Wide Band Signal Simulations Using FDTD Method Ultra Wide Band Signal Simulations Using FDTD Method Kazimierz Kai Siwiak Time Domain Corporation Tadeusz M. Babij Florida International University 27-28 September 2001 The Boston Marriott Hotel Newton,

More information

BER Performance of UWB Modulations through S-V Channel Model

BER Performance of UWB Modulations through S-V Channel Model World Academy of Science, Engineering and Technology 6 9 BER Performance of UWB Modulations through S-V Channel Model Risanuri Hidayat Abstract BER analysis of Impulse Radio Ultra Wideband (IR- UWB) pulse

More information

BER Performance of UWB Modulations through S-V Channel Model

BER Performance of UWB Modulations through S-V Channel Model Vol:3, No:1, 9 BER Performance of UWB Modulations through S-V Channel Model Risanuri Hidayat International Science Index, Electronics and Communication Engineering Vol:3, No:1, 9 waset.org/publication/364

More information

Elham Torabi Supervisor: Dr. Robert Schober

Elham Torabi Supervisor: Dr. Robert Schober Low-Rate Ultra-Wideband Low-Power for Wireless Personal Communication Area Networks Channel Models and Signaling Schemes Department of Electrical & Computer Engineering The University of British Columbia

More information

ULTRA WIDE BAND(UWB) Embedded Systems Programming

ULTRA WIDE BAND(UWB) Embedded Systems Programming ULTRA WIDE BAND(UWB) Embedded Systems Programming N.Rushi (200601083) Bhargav U.L.N (200601240) OUTLINE : What is UWB? Why UWB? Definition of UWB. Architecture and Spectrum Distribution. UWB vstraditional

More information

Narrow Band Interference (NBI) Mitigation Technique for TH-PPM UWB Systems in IEEE a Channel Using Wavelet Packet Transform

Narrow Band Interference (NBI) Mitigation Technique for TH-PPM UWB Systems in IEEE a Channel Using Wavelet Packet Transform Narrow Band Interference (NBI) Mitigation Technique for TH-PPM UWB Systems in IEEE 82.15.3a Channel Using Wavelet Pacet Transform Brijesh Kumbhani, K. Sanara Sastry, T. Sujit Reddy and Rahesh Singh Kshetrimayum

More information

DS-UWB signal generator for RAKE receiver with optimize selection of pulse width

DS-UWB signal generator for RAKE receiver with optimize selection of pulse width International Research Journal of Engineering and Technology (IRJET) e-issn: 2395-56 DS-UWB signal generator for RAKE receiver with optimize selection of pulse width Twinkle V. Doshi EC department, BIT,

More information

A Novel Sine Wave Based UWB Pulse Generator Design for Single/Multi-User Systems

A Novel Sine Wave Based UWB Pulse Generator Design for Single/Multi-User Systems Research Journal of Applied Sciences, Engineering and Technology 4(23): 5243-5247, 2012 ISSN: 2040-7467 Maxwell Scientific Organization, 2012 Submitted: May 04, 2012 Accepted: May 22, 2012 Published: December

More information

Ultra Wideband Transceiver Design

Ultra Wideband Transceiver Design Ultra Wideband Transceiver Design By: Wafula Wanjala George For: Bachelor Of Science In Electrical & Electronic Engineering University Of Nairobi SUPERVISOR: Dr. Vitalice Oduol EXAMINER: Dr. M.K. Gakuru

More information

Evolution of Cellular Systems. Challenges for Broadband Wireless Systems. Convergence of Wireless, Computing and Internet is on the Way

Evolution of Cellular Systems. Challenges for Broadband Wireless Systems. Convergence of Wireless, Computing and Internet is on the Way International Technology Conference, 14~15 Jan. 2003, Hong Kong Technology Drivers for Tomorrow Challenges for Broadband Systems Fumiyuki Adachi Dept. of Electrical and Communications Engineering, Tohoku

More information

On the Spectral and Power Requirements for Ultra-Wideband Transmission

On the Spectral and Power Requirements for Ultra-Wideband Transmission MITSUBISHI ELECTRIC RESEARCH LABORATORIES http://www.merl.com On the Spectral and Power Requirements for Ultra-Wideband Transmission Hongsan Sheng, Philip Orlik, Alexander M. Haimovich, Leonard J. Cimini,

More information

5G: Opportunities and Challenges Kate C.-J. Lin Academia Sinica

5G: Opportunities and Challenges Kate C.-J. Lin Academia Sinica 5G: Opportunities and Challenges Kate C.-J. Lin Academia Sinica! 2015.05.29 Key Trend (2013-2025) Exponential traffic growth! Wireless traffic dominated by video multimedia! Expectation of ubiquitous broadband

More information

Chapter 3. System Theory and Technologies. 3.1 Physical Layer. ... How to transport digital symbols...?

Chapter 3. System Theory and Technologies. 3.1 Physical Layer. ... How to transport digital symbols...? Chapter 3 System Theory and Technologies 1 r... How to transport digital symbols...? 3.1.1 Introduction 3.1. Symbols, Bits and Baud 3.1.3 Wired Physical Layers 3.1.4 Radio based physical layer electromagnetic

More information

Short-Range Ultra- Wideband Systems

Short-Range Ultra- Wideband Systems Short-Range Ultra- Wideband Systems R. A. Scholtz Principal Investigator A MURI Team Effort between University of Southern California University of California, Berkeley University of Massachusetts, Amherst

More information

UWB Impact on IEEE802.11b Wireless Local Area Network

UWB Impact on IEEE802.11b Wireless Local Area Network UWB Impact on IEEE802.11b Wireless Local Area Network Matti Hämäläinen 1, Jani Saloranta 1, Juha-Pekka Mäkelä 1, Ian Oppermann 1, Tero Patana 2 1 Centre for Wireless Communications (CWC), University of

More information

UWB Small Scale Channel Modeling and System Performance

UWB Small Scale Channel Modeling and System Performance UWB Small Scale Channel Modeling and System Performance David R. McKinstry and R. Michael Buehrer Mobile and Portable Radio Research Group Virginia Tech Blacksburg, VA, USA {dmckinst, buehrer}@vt.edu Abstract

More information

Design of a DS-UWB Transceiver

Design of a DS-UWB Transceiver Master Thesis IMIT/LECS/ [Year - 2005] Design of a DS-UWB Transceiver Master of Science Thesis In Electronic System Design by Saúl Rodríguez Dueñas Stockholm, March 2005 Supervisor: Examiner: Duo Xinzhong

More information

Analyzing Pulse Position Modulation Time Hopping UWB in IEEE UWB Channel

Analyzing Pulse Position Modulation Time Hopping UWB in IEEE UWB Channel Analyzing Pulse Position Modulation Time Hopping UWB in IEEE UWB Channel Vikas Goyal 1, B.S. Dhaliwal 2 1 Dept. of Electronics & Communication Engineering, Guru Kashi University, Talwandi Sabo, Bathinda,

More information

COPYRIGHTED MATERIAL INTRODUCTION

COPYRIGHTED MATERIAL INTRODUCTION 1 INTRODUCTION In the near future, indoor communications of any digital data from high-speed signals carrying multiple HDTV programs to low-speed signals used for timing purposes will be shared over a

More information

Ultra-Wideband Impulse Radio for Tactical Ad Hoc Communication Networks

Ultra-Wideband Impulse Radio for Tactical Ad Hoc Communication Networks Ultra-Wideband Impulse Radio for Tactical Ad Hoc Communication Networks J. Keith Townsend William M. Lovelace, Jon R. Ward, Robert J. Ulman N.C. State University, Raleigh, NC N.C. A&T State University,

More information

UWB Theory, Channel, and Applications

UWB Theory, Channel, and Applications Helsinki University of Technology S-72.4210 Postgraduate Course in Radio Communications Contents UWB Theory, Channel, and Applications Introduction UWB Channel Models Modulation Schemes References Hafeth

More information

6.976 High Speed Communication Circuits and Systems Lecture 16 Noise in Integer-N Frequency Synthesizers

6.976 High Speed Communication Circuits and Systems Lecture 16 Noise in Integer-N Frequency Synthesizers 6.976 High Speed Communication Circuits and Systems Lecture 16 in Integer-N Frequency Synthesizers Michael Perrott Massachusetts Institute o Technology Copyright 23 by Michael H. Perrott Frequency Synthesizer

More information

Project: IEEE P Working Group for Wireless Personal Area Networks N (WPANs)

Project: IEEE P Working Group for Wireless Personal Area Networks N (WPANs) Project: IEEE P802.15 Working Group for Wireless Personal Area Networks N (WPANs) Submission Title: [Wideband Measurement for Body Effect of BAN Channel] Date Submitted: [July 18, 2007] Source: [Tetsushi

More information

DESIGN AND ANALYSIS OF MULTIBAND OFDM SYSTEM OVER ULTRA WIDE BAND CHANNELS

DESIGN AND ANALYSIS OF MULTIBAND OFDM SYSTEM OVER ULTRA WIDE BAND CHANNELS DESIGN AND ANALYSIS OF MULTIBAND OFDM SYSTEM OVER ULTRA WIDE BAND CHANNELS G.Joselin Retna Kumar Research Scholar, Sathyabama University, Chennai, Tamil Nadu, India joselin_su@yahoo.com K.S.Shaji Principal,

More information

IDEAL for providing short-range high-rate wireless connectivity

IDEAL for providing short-range high-rate wireless connectivity 1536 IEEE TRANSACTIONS ON COMMUNICATIONS, VOL. 54, NO. 9, SEPTEMBER 2006 Achievable Rates of Transmitted-Reference Ultra-Wideband Radio With PPM Xiliang Luo, Member, IEEE, and Georgios B. Giannakis, Fellow,

More information

Experimental Evaluation Scheme of UWB Antenna Performance

Experimental Evaluation Scheme of UWB Antenna Performance Tokyo Tech. Experimental Evaluation Scheme of UWB Antenna Performance Sathaporn PROMWONG Wataru HACHITANI Jun-ichi TAKADA TAKADA-Laboratory Mobile Communication Research Group Graduate School of Science

More information

Ultra Wideband Channel Model for IEEE a and Performance Comparison of DBPSK/OQPSK Systems

Ultra Wideband Channel Model for IEEE a and Performance Comparison of DBPSK/OQPSK Systems B.V. Santhosh Krishna et al, / (IJCSIT) International Journal of Computer Science and Information Technologies, Vol. 2 (1), 211, 87-96 Ultra Wideband Channel Model for IEEE 82.1.4a and Performance Comparison

More information

RADIO FREQUENCY (RF) COMPLEMENTARY METAL-OXIDE SEMICONDUCTOR (CMOS) ULTRA WIDEBAND (UWB) TRANSMITTER AND RECEIVER FRONT-END DESIGN.

RADIO FREQUENCY (RF) COMPLEMENTARY METAL-OXIDE SEMICONDUCTOR (CMOS) ULTRA WIDEBAND (UWB) TRANSMITTER AND RECEIVER FRONT-END DESIGN. RADIO FREQUENCY (RF) COMPLEMENTARY METAL-OXIDE SEMICONDUCTOR (CMOS) ULTRA WIDEBAND (UWB) TRANSMITTER AND RECEIVER FRONT-END DESIGN A Dissertation by MENG MIAO Submitted to the Office of Graduate Studies

More information

A Soft-Limiting Receiver Structure for Time-Hopping UWB in Multiple Access Interference

A Soft-Limiting Receiver Structure for Time-Hopping UWB in Multiple Access Interference 2006 IEEE Ninth International Symposium on Spread Spectrum Techniques and Applications A Soft-Limiting Receiver Structure for Time-Hopping UWB in Multiple Access Interference Norman C. Beaulieu, Fellow,

More information

ECE5984 Orthogonal Frequency Division Multiplexing and Related Technologies Fall Mohamed Essam Khedr. Channel Estimation

ECE5984 Orthogonal Frequency Division Multiplexing and Related Technologies Fall Mohamed Essam Khedr. Channel Estimation ECE5984 Orthogonal Frequency Division Multiplexing and Related Technologies Fall 2007 Mohamed Essam Khedr Channel Estimation Matlab Assignment # Thursday 4 October 2007 Develop an OFDM system with the

More information

Cooperative Sensing for Target Estimation and Target Localization

Cooperative Sensing for Target Estimation and Target Localization Preliminary Exam May 09, 2011 Cooperative Sensing for Target Estimation and Target Localization Wenshu Zhang Advisor: Dr. Liuqing Yang Department of Electrical & Computer Engineering Colorado State University

More information

A. L. Marenco, R. Rice. Georgia Tech Research Institute Georgia Institute of Technology Atlanta, GA, 30332, USA

A. L. Marenco, R. Rice. Georgia Tech Research Institute Georgia Institute of Technology Atlanta, GA, 30332, USA 1 A. L. Marenco, R. Rice Georgia Tech Research Institute Georgia Institute of Technology Atlanta, GA, 30332, USA http://www.gtri.gatech.edu October 11, 2009 Abstract An increasing transformation has been

More information

Spread Spectrum and Ultra-Wideband Technology. Willem Baan ASTRON

Spread Spectrum and Ultra-Wideband Technology. Willem Baan ASTRON Spread Spectrum and Ultra-Wideband Technology Willem Baan ASTRON The Case for UWB encourage the deployment on a reasonable and timely basis of advanced telecommunications capability (FCC 1996) Broaden

More information

Nanoelectronics for Communication - A wider perspective -Use of Impulse based systems. Based on input from Lars Ohlsson och Mats Ärlelid

Nanoelectronics for Communication - A wider perspective -Use of Impulse based systems. Based on input from Lars Ohlsson och Mats Ärlelid Nanoelectronics for Communication - A wider perspective -Use of Impulse based systems Based on input from Lars Ohlsson och Mats Ärlelid Motivation HDMI Up to 10.2 Gbps Wifi 802.11n Up to 600 Mbps USB 3.0

More information

Design of Complex Wavelet Pulses Enabling PSK Modulation for UWB Impulse Radio Communications

Design of Complex Wavelet Pulses Enabling PSK Modulation for UWB Impulse Radio Communications Design of Complex Wavelet Pulses Enabling PSK Modulation for UWB Impulse Radio Communications Limin Yu and Langford B. White School of Electrical & Electronic Engineering, The University of Adelaide, SA

More information

MIMO in 4G Wireless. Presenter: Iqbal Singh Josan, P.E., PMP Director & Consulting Engineer USPurtek LLC

MIMO in 4G Wireless. Presenter: Iqbal Singh Josan, P.E., PMP Director & Consulting Engineer USPurtek LLC MIMO in 4G Wireless Presenter: Iqbal Singh Josan, P.E., PMP Director & Consulting Engineer USPurtek LLC About the presenter: Iqbal is the founder of training and consulting firm USPurtek LLC, which specializes

More information

Lab 3.0. Pulse Shaping and Rayleigh Channel. Faculty of Information Engineering & Technology. The Communications Department

Lab 3.0. Pulse Shaping and Rayleigh Channel. Faculty of Information Engineering & Technology. The Communications Department Faculty of Information Engineering & Technology The Communications Department Course: Advanced Communication Lab [COMM 1005] Lab 3.0 Pulse Shaping and Rayleigh Channel 1 TABLE OF CONTENTS 2 Summary...

More information

TSEK02: Radio Electronics Lecture 8: RX Nonlinearity Issues, Demodulation. Ted Johansson, EKS, ISY

TSEK02: Radio Electronics Lecture 8: RX Nonlinearity Issues, Demodulation. Ted Johansson, EKS, ISY TSEK02: Radio Electronics Lecture 8: RX Nonlinearity Issues, Demodulation Ted Johansson, EKS, ISY RX Nonlinearity Issues: 2.2, 2.4 Demodulation: not in the book 2 RX nonlinearities System Nonlinearity

More information

Point-to-Point Communications

Point-to-Point Communications Point-to-Point Communications Key Aspects of Communication Voice Mail Tones Alphabet Signals Air Paper Media Language English/Hindi English/Hindi Outline of Point-to-Point Communication 1. Signals basic

More information

Issues for Multi-Band Multi-Access Radio Circuits in 5G Mobile Communication

Issues for Multi-Band Multi-Access Radio Circuits in 5G Mobile Communication Issues or Multi-Band Multi-Access Radio Circuits in 5G Mobile Communication Yasushi Yamao AWCC The University o Electro-Communications LABORATORY Outline Background Requirements or 5G Hardware Issues or

More information

On the Multi-User Interference Study for Ultra Wideband Communication Systems in AWGN and Modified Saleh-Valenzuela Channel

On the Multi-User Interference Study for Ultra Wideband Communication Systems in AWGN and Modified Saleh-Valenzuela Channel On the Multi-User Interference Study for Ultra Wideband Communication Systems in AWGN and Modified Saleh-Valenzuela Channel Raffaello Tesi, Matti Hämäläinen, Jari Iinatti, Ian Oppermann, Veikko Hovinen

More information

A CMOS UWB Transmitter for Intra/Inter-chip Wireless Communication

A CMOS UWB Transmitter for Intra/Inter-chip Wireless Communication A CMOS UWB Transmitter for Intra/Inter-chip Wireless Communication Pran Kanai Saha, Nobuo Sasaki and Takamaro Kikkawa Research Center For Nanodevices and Systems, Hiroshima University 1-4-2 Kagamiyama,

More information

An Energy Efficient 1 Gb/s, 6-to-10 GHz CMOS IR-UWB Transmitter and Receiver With Embedded On-Chip Antenna

An Energy Efficient 1 Gb/s, 6-to-10 GHz CMOS IR-UWB Transmitter and Receiver With Embedded On-Chip Antenna An Energy Efficient 1 Gb/s, 6-to-10 GHz CMOS IR-UWB Transmitter and Receiver With Embedded On-Chip Antenna Zeshan Ahmad, Khaled Al-Ashmouny, Kuo-Ken Huang EECS 522 Analog Integrated Circuits (Winter 09)

More information

ULTRA WIDE BANDWIDTH 2006

ULTRA WIDE BANDWIDTH 2006 ULTRA WIDE BANDWIDTH 2006 1 TOPICS FOR DISCUSSION INTRODUCTION ULTRA-WIDEBAND (UWB) DESCRIPTION AND CHARACTERISTICS UWB APPLICATIONS AND USES UWB WAVEFORMS, DEFINITION, AND EFFECTIVENESS UWB TECHNICAL

More information

38123 Povo Trento (Italy), Via Sommarive 14

38123 Povo Trento (Italy), Via Sommarive 14 UNIVERSITY OF TRENTO DIPARTIMENTO DI INGEGNERIA E SCIENZA DELL INFORMAZIONE 38123 Povo Trento (Italy), Via Sommarive 14 http://www.disi.unitn.it AN INVESTIGATION ON UWB-MIMO COMMUNICATION SYSTEMS BASED

More information

Written Exam Channel Modeling for Wireless Communications - ETIN10

Written Exam Channel Modeling for Wireless Communications - ETIN10 Written Exam Channel Modeling for Wireless Communications - ETIN10 Department of Electrical and Information Technology Lund University 2017-03-13 2.00 PM - 7.00 PM A minimum of 30 out of 60 points are

More information

University of Bristol - Explore Bristol Research. Peer reviewed version. Link to published version (if available): /MC-SS.2011.

University of Bristol - Explore Bristol Research. Peer reviewed version. Link to published version (if available): /MC-SS.2011. Zhu, X., Doufexi, A., & Koçak, T. (2011). Beamforming performance analysis for OFDM based IEEE 802.11ad millimeter-wave WPANs. In 8th International Workshop on Multi-Carrier Systems & Solutions (MC-SS),

More information

Project: IEEE P Working Group for Wireless Personal Area Networks N

Project: IEEE P Working Group for Wireless Personal Area Networks N Project: IEEE P802.5 Working Group for Wireless Personal Area Networks N (WPANs( WPANs) Title: [Elements of an IR-UWB PHY for Body Area Networks] Date Submitted: [0 March, 2009] Source: Olivier Rousseaux,

More information

Fund. of Digital Communications Ch. 3: Digital Modulation

Fund. of Digital Communications Ch. 3: Digital Modulation Fund. of Digital Communications Ch. 3: Digital Modulation Klaus Witrisal witrisal@tugraz.at Signal Processing and Speech Communication Laboratory www.spsc.tugraz.at Graz University of Technology November

More information

Ultra-wideband Technology for Short-Range, High-Rate Wireless Communications. Jeff Foerster Intel Labs

Ultra-wideband Technology for Short-Range, High-Rate Wireless Communications. Jeff Foerster Intel Labs Ultra-wideband Technology for Short-Range, High-Rate Wireless Communications Jeff Foerster Intel Labs Overview of Presentation Review of current short/medium range wireless standards and expected challenges

More information

Ultra Wideband (UWB) & Radio Phy

Ultra Wideband (UWB) & Radio Phy Ultra Wideband (UWB) & Radio Phy speaker: Predrag Spasojevic Dipankar Raychaudhuri, Larry Greenstein, Ivan Seskar, Leo Razoumov, James Evans, Di Wu, Guofeng Lu, and Mustafa Demirhan May 2003, IAB Meeting

More information

Part A: Spread Spectrum Systems

Part A: Spread Spectrum Systems 1 Telecommunication Systems and Applications (TL - 424) Part A: Spread Spectrum Systems Dr. ir. Muhammad Nasir KHAN Department of Electrical Engineering Swedish College of Engineering and Technology March

More information

Selected answers * Problem set 6

Selected answers * Problem set 6 Selected answers * Problem set 6 Wireless Communications, 2nd Ed 243/212 2 (the second one) GSM channel correlation across a burst A time slot in GSM has a length of 15625 bit-times (577 ) Of these, 825

More information

UWB Antennas & Measurements. Gabriela Quintero MICS UWB Network Meeting 11/12/2007

UWB Antennas & Measurements. Gabriela Quintero MICS UWB Network Meeting 11/12/2007 UWB Antennas & Measurements Gabriela Quintero MICS UWB Network Meeting 11/12/27 Outline UWB Antenna Analysis Frequency Domain Time Domain Measurement Techniques Peak and Average Power Measurements Spectrum

More information

Cooperative versus Full-Duplex Communication in Cellular Networks: A Comparison of the Total Degrees of Freedom. Amr El-Keyi and Halim Yanikomeroglu

Cooperative versus Full-Duplex Communication in Cellular Networks: A Comparison of the Total Degrees of Freedom. Amr El-Keyi and Halim Yanikomeroglu Cooperative versus Full-Duplex Communication in Cellular Networks: A Comparison of the Total Degrees of Freedom Amr El-Keyi and Halim Yanikomeroglu Outline Introduction Full-duplex system Cooperative system

More information

A Pulse-Based CMOS Ultra-Wideband Transmitter for WPANs

A Pulse-Based CMOS Ultra-Wideband Transmitter for WPANs A Pulse-Based CMOS Ultra-Wideband Transmitter for WPANs Murat Demirkan* Solid-State Circuits Research Laboratory University of California, Davis *Now with Agilent Technologies, Santa Clara, CA 03/20/2008

More information

Lecture 7/8: UWB Channel. Kommunikations

Lecture 7/8: UWB Channel. Kommunikations Lecture 7/8: UWB Channel Kommunikations Technik UWB Propagation Channel Radio Propagation Channel Model is important for Link level simulation (bit error ratios, block error ratios) Coverage evaluation

More information

ON EQUALIZER TAP AND ANTENNA SELECTION FOR UWB AND MIMO SYSTEMS WITH LINEAR MMSE RECEIVERS

ON EQUALIZER TAP AND ANTENNA SELECTION FOR UWB AND MIMO SYSTEMS WITH LINEAR MMSE RECEIVERS ON EQUALIZER TAP AND ANTENNA SELECTION FOR UWB AND MIMO SYSTEMS WITH LINEAR MMSE RECEIVERS ON EQUALIZER TAP AND ANTENNA SELECTION FOR UWB AND MIMO SYSTEMS WITH LINEAR MMSE RECEIVERS LIN ZHIWEI 2006 LIN

More information

Impact of Metallic Furniture on UWB Channel Statistical Characteristics

Impact of Metallic Furniture on UWB Channel Statistical Characteristics Tamkang Journal of Science and Engineering, Vol. 12, No. 3, pp. 271 278 (2009) 271 Impact of Metallic Furniture on UWB Channel Statistical Characteristics Chun-Liang Liu, Chien-Ching Chiu*, Shu-Han Liao

More information

AN ABSTRACT OF A THESIS THEORY AND APPLICATION OF TIME REVERSAL TECHNIQUE TO ULTRA WIDEBAND WIRELESS COMMUNICATIONS. Abiodun E.

AN ABSTRACT OF A THESIS THEORY AND APPLICATION OF TIME REVERSAL TECHNIQUE TO ULTRA WIDEBAND WIRELESS COMMUNICATIONS. Abiodun E. AN ABSTRACT OF A THESIS THEORY AND APPLICATION OF TIME REVERSAL TECHNIQUE TO ULTRA WIDEBAND WIRELESS COMMUNICATIONS Abiodun E. Akogun Master of Science in Electrical Engineering Inter symbol interference

More information

RADIO RECEIVERS ECE 3103 WIRELESS COMMUNICATION SYSTEMS

RADIO RECEIVERS ECE 3103 WIRELESS COMMUNICATION SYSTEMS RADIO RECEIVERS ECE 3103 WIRELESS COMMUNICATION SYSTEMS FUNCTIONS OF A RADIO RECEIVER The main functions of a radio receiver are: 1. To intercept the RF signal by using the receiver antenna 2. Select the

More information

Noise and Distortion in Microwave System

Noise and Distortion in Microwave System Noise and Distortion in Microwave System Prof. Tzong-Lin Wu EMC Laboratory Department of Electrical Engineering National Taiwan University 1 Introduction Noise is a random process from many sources: thermal,

More information

Detection and direction-finding of spread spectrum signals using correlation and narrowband interference rejection

Detection and direction-finding of spread spectrum signals using correlation and narrowband interference rejection Detection and direction-inding o spread spectrum signals using correlation and narrowband intererence rejection Ulrika Ahnström,2,JohanFalk,3, Peter Händel,3, Maria Wikström Department o Electronic Warare

More information

ETSF15 Physical layer communication. Stefan Höst

ETSF15 Physical layer communication. Stefan Höst ETSF15 Physical layer communication Stefan Höst Physical layer Analog vs digital (Previous lecture) Transmission media Modulation Represent digital data in a continuous world Disturbances, Noise and distortion

More information

UWB Pulse Generation and modulation for signal extraction from implantable devices

UWB Pulse Generation and modulation for signal extraction from implantable devices XX IMEKO World Congress Metrology for Green Growth September 9 14, 2012, Busan, Republic of Korea UWB Pulse Generation and modulation for signal extraction from implantable devices Mokhaled M., Mohammed

More information

Project: IEEE P Working Group for Wireless Personal Area Networks N

Project: IEEE P Working Group for Wireless Personal Area Networks N doc.: IEEE 802.15-03101r0 Project: IEEE P802.15 Working Group for Wireless Personal Area Networks N (WPANs( WPANs) Submission Title: [Channel ized, Optimum Pulse Shaped UWB PHY Proposal] Date Submitted:

More information

Lecture 1 - September Title 26, Ultra Wide Band Communications

Lecture 1 - September Title 26, Ultra Wide Band Communications Lecture 1 - September Title 26, 2011 Ultra Wide Band Communications Course Presentation Maria-Gabriella Di Benedetto Professor Department of Information Engineering, Electronics and Telecommunications

More information

Ultra Low Power Transceiver for Wireless Body Area Networks

Ultra Low Power Transceiver for Wireless Body Area Networks Ultra Low Power Transceiver for Wireless Body Area Networks Bearbeitet von Jens Masuch, Manuel Delgado-Restituto 1. Auflage 2013. Buch. viii, 122 S. Hardcover ISBN 978 3 319 00097 8 Format (B x L): 15,5

More information

Jurianto Joe. IDA UWB Seminar Feb. 25, 2003

Jurianto Joe. IDA UWB Seminar Feb. 25, 2003 Cellonics UWB Signal Generation and Recovery Jurianto Joe IDA UWB Seminar Feb. 25, 2003 Outline Cellonics UWB method wo schools of thought in using 3.1-10.6 GHz band for UWB Cellonics and other UWB methods

More information

PERFORMANCE ENHANCEMENT OF DS-UWB SHORT RANGE COMMUNICATION SYSTEM USING EQUALIZATION TECHNIQUES ASHISH KUMAR NAYAK

PERFORMANCE ENHANCEMENT OF DS-UWB SHORT RANGE COMMUNICATION SYSTEM USING EQUALIZATION TECHNIQUES ASHISH KUMAR NAYAK PERFORMANCE ENHANCEMENT OF DS-UWB SHORT RANGE COMMUNICATION SYSTEM USING EQUALIZATION TECHNIQUES ASHISH KUMAR NAYAK DEPARTMENT OF ELECTRICAL ENGINEERING NATIONAL INSTITUTE OF TECHNOLOGY, ROURKELA 2013

More information

Power limits fulfilment and MUI reduction based on pulse shaping in UWB networks

Power limits fulfilment and MUI reduction based on pulse shaping in UWB networks Power limits fulfilment and MUI reduction based on pulse shaping in UWB networks Luca De Nardis, Guerino Giancola, Maria-Gabriella Di Benedetto Università degli Studi di Roma La Sapienza Infocom Dept.

More information

What s Behind 5G Wireless Communications?

What s Behind 5G Wireless Communications? What s Behind 5G Wireless Communications? Marc Barberis 2015 The MathWorks, Inc. 1 Agenda 5G goals and requirements Modeling and simulating key 5G technologies Release 15: Enhanced Mobile Broadband IoT

More information

2. LITERATURE REVIEW

2. LITERATURE REVIEW 2. LITERATURE REVIEW In this section, a brief review of literature on Performance of Antenna Diversity Techniques, Alamouti Coding Scheme, WiMAX Broadband Wireless Access Technology, Mobile WiMAX Technology,

More information

CODE SHIFTED REFERENCE IMPULSE-BASED COOPERATIVE UWB COMMUNICATION SYSTEM

CODE SHIFTED REFERENCE IMPULSE-BASED COOPERATIVE UWB COMMUNICATION SYSTEM P a g e 1 CODE SHIFTED REFERENCE IMPULSE-BASED COOPERATIVE UWB COMMUNICATION SYSTEM Pir Meher Ali Shah Mohammed Abdul Rub Ashik Gurung This thesis is presented as part of Degree of Master of Science in

More information

Ultra Wideband Indoor Radio Channel Measurements

Ultra Wideband Indoor Radio Channel Measurements Ultra Wideband Indoor Radio Channel Measurements Matti Hämäläinen, Timo Pätsi, Veikko Hovinen Centre for Wireless Communications P.O.Box 4500 FIN-90014 University of Oulu, FINLAND email: matti.hamalainen@ee.oulu.fi

More information

TSEK02: Radio Electronics Lecture 8: RX Nonlinearity Issues, Demodulation. Ted Johansson, EKS, ISY

TSEK02: Radio Electronics Lecture 8: RX Nonlinearity Issues, Demodulation. Ted Johansson, EKS, ISY TSEK02: Radio Electronics Lecture 8: RX Nonlinearity Issues, Demodulation Ted Johansson, EKS, ISY 2 RX Nonlinearity Issues, Demodulation RX nonlinearities (parts of 2.2) System Nonlinearity Sensitivity

More information

Differential Pulse Position Modulation for 5 GHz

Differential Pulse Position Modulation for 5 GHz Differential Pulse Position Modulation for 5 GHz Slide 1 Why DPPM? Low-Cost, Low-Complexity 5 GHz PHY Non-Coherent Detection No Equalizer Equalizer Training & Error Propagation are fundamental problems.

More information

1. Motivation. 2. Periodic non-gaussian noise

1. Motivation. 2. Periodic non-gaussian noise . Motivation One o the many challenges that we ace in wireline telemetry is how to operate highspeed data transmissions over non-ideal, poorly controlled media. The key to any telemetry system design depends

More information

Project: IEEE P Working Group for Wireless Personal Area Networks N

Project: IEEE P Working Group for Wireless Personal Area Networks N Project: IEEE P80.15 Working Group for Wireless Personal Area Networks N (WPANs( WPANs) Title: [UWB Direct Chaotic Communications Technology] Date Submitted: [15 November, 004] Source: [(1) Y. Kim, C.

More information

On the performance of Turbo Codes over UWB channels at low SNR

On the performance of Turbo Codes over UWB channels at low SNR On the performance of Turbo Codes over UWB channels at low SNR Ranjan Bose Department of Electrical Engineering, IIT Delhi, Hauz Khas, New Delhi, 110016, INDIA Abstract - In this paper we propose the use

More information