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E-grāmata: Wireless Information Networks

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(Worcester Polytechnic Institute), (Worcester Polytechnic Institute)
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The authors (both of Worcester Polytechnic Institute) present the new edition of introduction to the field of wireless information networks for electrical and computer engineering students at the graduate or senior undergraduate levels, which now provides more emphasis on signal processing topics and less on systems engineering aspects. Fifteen chapters cover the evolution of the wireless industry; characterization of radio propagation; modeling and simulation of narrowband signal characteristics; measurement of wideband and UWB (ultrawideband) channel characteristics; modeling of wideband radio channel characteristics; narrowband modem technology; fading, diversity, and coding; broadband modem technologies; spread-spectrum and CDMA (code division multiple access) technology; topology, medium access, and performance; ultrawideband communications; RF location sensing; wireless optical networks; and systems and standards. Annotation ©2005 Book News, Inc., Portland, OR (booknews.com)

Towards location aware mobile ad hoc sensors

A Systems Engineering Approach to Wireless Information Networks

The Second Edition of this internationally respected textbook brings readers fully up to date with the myriad of developments in wireless communications. When first published in 1995, wireless communications was synonymous with cellular telephones. Now wireless information networks are the most important technology in all branches of telecommunications. Readers can learn about the latest applications in such areas as ad hoc sensor networks, home networking, and wireless positioning.

Wireless Information Networks takes a systems engineering approach: technical topics are presented in the context of how they fit into the ongoing development of new systems and services, as well as the recent developments in national and international spectrum allocations and standards. The authors have organized the myriad of current and emerging wireless technologies into logical categories:
* Introduction to Wireless Networks presents an up-to-the-moment discussion of the evolution of the cellular industry from analog cellular technology to 2G, 3G, and 4G, as well as the emergence of WLAN and WPAN as broadband ad hoc networks
* Characteristics of Radio Propagation includes new coverage of channel modeling for space-time, MIMO, and UWB communications and wireless geolocation networks
* Modem Design offers new descriptions of space-time coding, MIMO antenna systems, UWB communications, and multi-user detection and interference cancellation techniques used in CDMA networks
* Network Access and System Aspects incorporates new chapters on UWB systems and RF geolocations, with a thorough revision of wireless access techniques and wireless systems and standards

Exercises that focus on real-world problems are provided at the end of each chapter. The mix of assignments, which includes computer projects and questionnaires in addition to traditional problem sets, helps readers focus on key issues and develop the skills they need to solve actual engineering problems. A separate Instructor's Manual is available that includes a solution book and supporting material for preparing class presentations. Extensive references are provided for those readers who would like to explore particular topics in greater depth.

With its emphasis on knowledge-building to solve problems, this is an excellent graduate-level textbook. Like the previous edition, this latest edition will also be a standard reference for the telecommunications industry.

An Instructor's Manual presenting detailed solutions to all the problems in the book is available from the Wiley editorial department.

Preface xi
PART I INTRODUCTION TO WIRELESS NETWORKS
1(50)
Overview of Wireless Networks
3(20)
Introduction
3(3)
Network Architecture and Design Issues
6(14)
Key Trends in Wireless Networking
20(1)
Outline of the Book
21(2)
Questions
22(1)
Evolution of the Wireless Industry
23(28)
Introduction
23(6)
Three Views of the Wireless Industry
29(3)
Three Generations of Cellular Networks
32(11)
Trends in Wireless Technologies
43(8)
Questions
49(2)
PART II CHARACTERISTICS OF RADIO PROPAGATION
51(228)
Characterization of Radio Propagation
53(40)
Introduction
53(2)
Multipath Fading and the Distance-Power Relationship
55(9)
Local Movements and Doppler Shift
64(2)
Multipath for Wideband Signals
66(6)
Classical Uncorrelated Scattering Model
72(9)
Indoor and Urban Radio Propagation Modeling
81(12)
Questions
86(1)
Problems
87(2)
Projects
89(4)
Modeling and Simulation of Narrowband Signal Characteristics
93(56)
Introduction
93(3)
Modeling Path Loss and Slow Shadow Fading
96(14)
Doppler Spectrum of Fast Envelope Fading
110(12)
Statistical Behavior of Fast Envelope Fading
122(4)
Simulation of Fast Envelope Fading
126(23)
Questions
133(1)
Problems
134(3)
Projects
137(12)
Measurement of Wideband and UWB Channel Characteristics
149(56)
Introduction
149(2)
Time-Domain Measurement Techniques
151(20)
Frequency-Domain Measurement Techniques
171(9)
Advances in Frequency-Domain Channel Measurement
180(25)
Questions
197(1)
Problems
198(2)
Project
200(5)
Modeling of Wideband Radio Channel Characteristics
205(74)
Introduction
206(2)
Wideband Time-Domain Statistical Modeling
208(26)
Wideband Frequency-Domain Channel Modeling
234(9)
Comparison Between Statistical Models
243(2)
Ray-Tracing Algorithms
245(16)
Direct Solution of Radio Propagation Equations
261(2)
Comparison of Deterministic and Statistical Modeling
263(2)
Site-Specific Statistical Model
265(14)
Appendix 6A: GSM-Recommended Multipath Propagation Models
270(2)
Appendix 6B: Wideband Multipath Propagation Models
272(2)
Questions
274(1)
Problems
275(2)
Projects
277(2)
PART III MODEM DESIGN
279(220)
Narrowband Modem Technology
281(60)
Introduction
282(2)
Basic Modulation Techniques
284(23)
Theoretical Limits and Practical Impairments
307(5)
Traditional Modems for Wide-Area Wireless Networks
312(16)
Other Aspects of Modem Implementation
328(13)
Questions
335(1)
Problems
336(2)
Projects
338(3)
Fading, Diversity, and Coding
341(36)
Introduction
341(2)
Radio Communication on Flat Rayleigh Fading Channels
343(4)
Diversity Combining
347(6)
Error-Control Coding for Wireless Channels
353(10)
Space-Time Coding
363(2)
MIMO and STC
365(12)
Questions
372(1)
Problems
372(2)
Projects
374(3)
Broadband Modem Technologies
377(58)
Introduction
378(2)
Effects of Frequency-Selective Multipath Fading
380(4)
Discrete Multipath Fading Channel Model
384(5)
Adaptive Discrete Matched Filter
389(4)
Adaptive Equalization
393(12)
Sectored Antennas
405(6)
Multicarrier, OFDM, and Frequency Diversity
411(10)
Comparison of Traditional Broadband Modems
421(2)
MIMO in Frequency-Selective Fading
423(12)
Appendix 9A: Analysis of the Equalizers
425(3)
Questions
428(1)
Problems
429(2)
Projects
431(4)
Spread-Spectrum and CDMA Technology
435(64)
Introduction
435(4)
Principles of Frequency-Hopping Spread Spectrum
439(5)
Principles of Direct-Sequence Spread Spectrum
444(20)
Interference in Spread-Spectrum Systems
464(12)
Performance of CDMA Systems
476(23)
Questions
494(1)
Problems
495(4)
PART IV SYSTEMS ASPECTS
499(190)
Topology, Medium Access, and Performance
501(80)
Introduction
501(2)
Topologies for Local Networks
503(3)
Cellular Topology for Wide-Area Networks
506(15)
Centrally Controlled Assigned Access Methods
521(16)
Distributed Contention-Based Access Control
537(44)
Questions
572(1)
Problems
573(3)
Project
576(5)
Ultrawideband Communications
581(26)
Introduction
581(3)
UWB Channel Characteristics
584(5)
Impulse Radio and Time-Hopping Access
589(6)
Direct-Sequence UWB
595(4)
Multiband OFDM
599(8)
Questions
603(1)
Problems
604(3)
RF Location Sensing
607(32)
Introduction
607(4)
RF Location-Sensing Techniques
611(8)
Modeling The Behavior of RF Sensors
619(7)
Wireless Positioning Algorithms
626(13)
Questions
636(1)
Problems
637(2)
Wireless Optical Networks
639(24)
Introduction
639(2)
Implementation
641(2)
Eye Safety
643(1)
IR Channel Characterization and Data-Rate Limitations
644(9)
Modulation Techniques for Optical Communications
653(6)
Multiple Access and Data Rate
659(4)
Questions
661(2)
Systems and Standards
663(26)
Introduction
663(1)
GSM, GPRS, and EDGE
664(10)
CDMA and HDR
674(5)
Other Historical Systems
679(3)
Wireless LANs
682(3)
Speech Coding in Wireless Systems
685(4)
Questions
687(2)
References 689(24)
Index 713(8)
About the Authors 721


KAVEH PAHLAVAN, PhD, is a Professor of Electrical and Computer Engineering, a Professor of Computer Science, and the Director of the Center for Wireless Information Network Studies, Worcester Polytechnic Institute. He is also a Visiting Professor at the Center for Wireless Communications, University of Oulu, Finland. Dr. Pahlavan is also the principal author of Principles of Wireless Networks: A Unified Approach, Editor in Chief of the International Journal of Wireless Information Networks, Fellow of the IEEE, a Nokia Fellow, and a former Fulbright-Nokia Scholar. ALLEN H. LEVESQUE, PhD, is a consulting engineer specializing in digital communications technologies and an Adjunct Professor at Worcester Polytechnic Institute. Dr. Levesque is coauthor of Error-Control Techniques for Digital Communication (Wiley), an Associate Editor of the International Journal of Wireless Information Networks, and a Fellow of the IEEE.