Showing posts with label communication theory. Show all posts
Showing posts with label communication theory. Show all posts

Principles of Digital Communication Review

Principles of Digital Communication
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This is, perhaps, the most "intuitive" textbook in communications engineering in recent memory. While the emphasis of this text is on theory, Gallager does a fantastic job in connecting the mathematics to engineering. While the target audience of the text is Graduate students, anyone with a decent background in real analysis or linear algebra will be able to get a lot of mileage out of Gallager's approach, which is to start with "toy models", i.e. simple models, and then modify these models accordingly for different environments (i.e. Wireless).
While the book surveys various aspects of communications engineering, such as information theory and wireless communications, the true "meat" of the book lies in its presentation of the most fundamental aspects of communications theory. Notably, this book, like Wozencraft's and Jacob's Principles of Communication Engineering, presents the signal space approach (using L2 orthonormal expansions to represent waveforms and noise) to a in a very clear manner. Most communications engineering books these days seem to (incorrectly) teach students (including myself as an undergraduate) to reason about problems in communications theory primarily in terms of cosines and sines. This text, however makes it clear that most problems in communications theory can be explained in terms of the signal space viewpoint.
There probably isn't a single word, phrase, or mathematical expression that is not needed in this text. As another reviewer mentioned, readers have the benefit of being able to watch Gallager's online lectures, which complement this text, via MIT Open Courseware. Even if you have not studied communications engineering in great depth, I encourage you to watch the lectures to witness Gallager's clear style of articulating engineering principles.

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The renowned communications theorist Robert Gallager brings his lucid writing style to the study of the fundamental system aspects of digital communication for a one-semester course for graduate students. With the clarity and insight that have characterized his teaching and earlier textbooks, he develops a simple framework and then combines this with careful proofs to help the reader understand modern systems and simplified models in an intuitive yet precise way. A strong narrative and links between theory and practice reinforce this concise, practical presentation. The book begins with data compression for arbitrary sources. Gallager then describes how to modulate the resulting binary data for transmission over wires, cables, optical fibers, and wireless channels. Analysis and intuitive interpretations are developed for channel noise models, followed by coverage of the principles of detection, coding, and decoding. The various concepts covered are brought together in a description of wireless communication, using CDMA as a case study.

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Simulation and Software Radio for Mobile Communications (Artech House Universal Personal Communications) Review

Simulation and Software Radio for Mobile Communications (Artech House Universal Personal Communications)
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Harada & Prasad provide a very good working-level
understanding of how to simulate communication systems
using MATLAB. This book will appeal to advanced
undergraduate and beginning graduate electrical
engineers. It emphasizes nuts&bolts simulation, and
assumes a good working knowledge of communication
system analysis. Professionals who use MATLAB to
analyze communication systems for a living will find
the coverage fairly basic - even shallow - but the
authors well meet their goal of giving beginners a
better leg up on the process. Including their MATLAB
source code on a CD with the book may make the purchase
worthwhile all by itself.

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This resource gives professionals a comprehensive understanding of the simulation and evaluation methods used in the design and development of today's mobile communication systems. Professionals get in-depth discussions on digital modulation techniques, transmission schemes, discusses multiple access protocols, cellular telecommunication systems, and cutting-edge software radio communication systems.

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A Foundation in Digital Communication Review

A Foundation in Digital Communication
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This book is for the serious student/engineer/scientist that has a solid foundation in math. For such a person this book is a tremendous tool. It explains in the most rigorous way all concepts in the basis of digital comm. No ambiguities are left. Everything is rigorously introduced. I felt like many concepts are more clear now and if you assimilate the material, you'll gain more confidence in dealing with the concepts of digital comm. The author is not afraid of proving important results no matter how long the proof is.
As a unique characteristic (I've read the first 400 pages so far) I could not find but just 1 typo! If you compare this to books like proakis, gallager, goldsmith, Tse, these books have pages and pages of typos. You're almost afraid to start reading them...
With Lapidoth you're in solid ground. Overall a great achievement. I wish and hope that prof. Lapidoth will write a couple of more books on wireless communications, a hot topic where still I cannot find an exceptional textbook (there are several ones that are OK but still with so many errors...).

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This intuitive yet rigourous introduction derives the core results of digital communication from first principles. Theory, rather than industry standards, motivates the engineering approaches, and key results are stated with all the required assumptions. The book emphasizes the geometric view, opening with the inner product, the matched filter for its computation, Parseval's theorem, the sampling theorem as an orthonormal expansion, the isometry between passband signals and their baseband representation, and the spectral-efficiency optimality of quadrature amplitude modulation (QAM). Subsequent chapters address noise, hypothesis testing, Gaussian stochastic processes, and the sufficiency of the matched filter outputs. Uniquely, there is a treatment of white noise without generalized functions, and of the power spectral density without artificial random jitters and random phases in the analysis of QAM. This systematic and insightful book, with over 300 exercises, is ideal for graduate courses in digital communication, and for anyone asking 'why' and not just 'how'.

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Fundamentals of Digital Communication Review

Fundamentals of Digital Communication
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Dr. Madhow is an exceptional lecturer. I took several classes from him when he taught at the University of Illinois at Urbana Champaign. He has a very easy to read and intuitive writing style. I highly recommend this book for advanced undergraduates, 1st and 2nd year graduate students and professionals looking for a good review of the fundamentals of digital communications. I have designed many digital communications systems over the course of my career and I can tell you that without the fundamentals I learned from Dr. Madhow, I would have never been able to be an effective communication system designer.

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This is a concise presentation of the concepts underlying the design of digital communication systems, without the detail that can overwhelm students. Many examples, from the basic to the cutting-edge, show how the theory is used in the design of modern systems and the relevance of this theory will motivate students. The theory is supported by practical algorithms so that the student can perform computations and simulations. Leading edge topics in coding and wireless communication make this an ideal text for students taking just one course on the subject. Fundamentals of Digital Communications has coverage of turbo and LDPC codes in sufficient detail and clarity to enable hands-on implementation and performance evaluation, as well as 'just enough' information theory to enable computation of performance benchmarks to compare them against. Other unique features include space-time communication and geometric insights into noncoherent communication and equalization.

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Digital Communications, 5th Edition Review

Digital Communications, 5th Edition
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I'm taking a graduate course of digital communications and using Proakis' book along with Sklar's one. The 2nd one is a very illustrative, book very interesting to read and easy to follow, but when you wanna go further you must go to Proakis' book. This is a more deep reference, who takes more emphasys on mathematical and stochastic models to explain why thing happens in digital communications. In this sense, this book is rigorous, and along with Sklar's book form a very interesting/complemented reference.

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Digital Communications is a classic book in the area that is designed to be used as a senior or graduate level text. The text is flexible and can easily be used in a one semester course or there is enough depth to cover two semesters. Its comprehensive nature makes it a great book for students to keep for reference in their professional careers.
This all-inclusive guide delivers an outstanding introduction to the analysis and design of digital communication systems. Includes expert coverage of new topics: Turbocodes, Turboequalization, Antenna Arrays, Digital Cellular Systems, and Iterative Detection. Convenient, sequential organization begins with a look at the history and classification of channel models and builds from there.

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Digital Signal Processing with Examples in MATLAB®, Second Edition (Electrical Engineering & Applied Signal Processing Series) Review

Digital Signal Processing with Examples in MATLABĀ®, Second Edition (Electrical Engineering and Applied Signal Processing Series)
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I used this book for a first course on DSP. This book is very practical. It is loaded with Matlab algorithms that will make your discrete signal processing simulation development enjoyable and challenging.
The Matlab examples cover just about every thing encountered in DSP development. It covers statistical signal analysis, adaptive filter design, FIR, IIR and other important topics.
Readers of this book should download the entire code examples used in this book off the website assigned to this book.

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Based on fundamental principles from mathematics, linear systems, and signal analysis, digital signal processing (DSP) algorithms are useful for extracting information from signals collected all around us. Combined with today's powerful computing capabilities, they can be used in a wide range of application areas, including engineering, communications, geophysics, computer science, information technology, medicine, and biometrics. Updated and expanded, Digital Signal Processing with Examples in MATLAB, Second Edition introduces the basic aspects of signal processing and presents the fundamentals of DSP. It also relates DSP to continuous signal processing, rather than treating it as an isolated operation.New to the Second EditionDiscussion of current DSP applications New chapters on analog systems models and pattern recognition using support vector machinesNew sections on the chirp z-transform, resampling, waveform reconstruction, discrete sine transform, and logarithmic and nonuniform sampling A more comprehensive table of transformsDeveloping the fundamentals of DSP from the ground up, this bestselling text continues to provide readers with a solid foundation for further work in most areas of signal processing. For novices, the authors review the basic mathematics required to understand DSP systems and offer a brief introduction to MATLAB. They also include end-of-chapter exercises that not only provide examples of the topics discussed, but also introduce topics and applications not covered in the chapters.

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Signals and Systems Laboratory with MATLAB Review

Signals and Systems Laboratory with MATLAB
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This book provides a very efficient way to the direct adoption of fundamental concepts and the implementation of advanced techniques in Signal Processing (SP).
Although one can find plenty of books in the market covering aspects of SP in a pure theoretical sense and also several others teaching the MATLAB language itself in a function-to-function basis, however it is very difficult to identify a single handbook oriented mainly toward the direct implementation of SP techniques. Since SP is a prerequisite for many scientific fields of engineering and other applied sciences, it is very frequent that many times we cannot proceed very easily in the completion of a task or a project, since basic concepts related to the signal nature are missing (e.g. Frequency Response, Sampling Theory, Discrete Fourier Transform (DFT) etc). On the other hand, several people interested in the area, especially students, find it really difficult to follow the mathematic manipulations found in the literature or being taught in the class, since they cannot "play" with the signal in a try-and-error way.
This book is novel in the sense that it smoothly bridges the gap between theory of SP and practice in terms of implementation through simple MATLAB commands. The reader can easily grab a concept related to SP, either simple or advanced, by studying the corresponding compact theoretical background (without being confused with generalities or unnecessary details) and looking at the provided examples along with the given graphs in order to visualize the effect of the SP action. Additionally, with just a few commands typed in the MATLAB Command Window, he/she can effortlessly reproduce the same results that can be used as a basis for further processing. However, it is evident, that if the potential reader wants to focus much further on a specific concept/technique, then this material has to be accompanied by a more theoretical oriented SP book.
I absolutely recommend this handbook to everyone that can understand the value of the top-to-bottom approach in the study!

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Real-Time Digital Signal Processing from MATLAB to C with the TMS320C6x DSK Review

Real-Time Digital Signal Processing from MATLAB to C with the TMS320C6x DSK
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It is good, with a lot of examples in matlab and c, maybe, it should take more care about the erratas in c code, because there are some errors that can confuse very much when you are developping a project.

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From personal music players to anti-lock brakes and advanced digital flight controllers, the demand for real-time digital signal processing (DSP) continues to grow. Mastering real-time DSP is one of the most challenging and time-consuming pursuits in the field, exacerbated by the lack of a resource that solidly bridges the gap between theory and practice. Recognizing that there is a better way forward, accomplished experts Welch, Wright, and Morrow offer Real-Time Digital Signal Processing from MATLAB to C with the TMS320C6x DSK.This book collects all of the necessary tools in a single, field-tested source of unrivaled authority. The authors seamlessly integrate theory with easy-to-use, inexpensive hardware and software tools in an approachable and hands-on manner. Using abundant examples and exercises in a step-by-step approach, they work from familiar interfaces such as MATLAB to running algorithms in real-time on industry-standard DSP hardware. For each concept, the book uses a four-step methodology: a brief review of relevant theory; demonstration of the concept in winDSK6, an easy-to-use software tool; explanation and demonstration of MATLAB techniques for implementation; and explanation of the necessary C code to implement the algorithms in real time.Covering a broad spectrum of topics in a hands-on, concise, and approachable way, Real-Time Digital Signal Processing from MATLAB to C with the TMS320C6x DSK paves the way toward mastery of real-time DSP. Essential source code is available for download.

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MIMO Wireless Communications Review

MIMO Wireless Communications
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I don't recommend this book for people who want to learn MIMO. If you need a reference to equations and such, it is fine, but there is no real explanation of any concepts in any level of detail.

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Multiple-input multiple-output (MIMO) technology constitutes a breakthrough in the design of wireless communications systems, and is already at the core of several wireless standards. Exploiting multipath scattering, MIMO techniques deliver significant performance enhancements in terms of data transmission rate and interference reduction. This book is a detailed introduction to the analysis and design of MIMO wireless systems. Beginning with an overview of MIMO technology, the authors then examine the fundamental capacity limits of MIMO systems. Transmitter design, including precoding and space-time coding, is then treated in depth, and the book closes with two chapters devoted to receiver design. Written by a team of leading experts, the book blends theoretical analysis with physical insights, and highlights a range of key design challenges. It can be used as a textbook for advanced courses on wireless communications, and will also appeal to researchers and practitioners working on MIMO wireless systems.

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Signal Processing for Wireless Communications Review

Signal Processing for Wireless Communications
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This book is the "BEST" book I have ever seen in wireless technology with "practical" physical layer design focus. It is not surprising to see the author coming from rich industrial experience, I can see that easily in the book. I highly recommend the book for physical layer designers.

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