Ideal Sequence Design in Time-Frequency Space: Applications to Radar, Sonar, and Communication Systems: Applied and Numerical Harmonic Analysis
Autor Myoung An, Andrzej K. Brodzik, Richard Tolimierien Limba Engleză Hardback – 2 dec 2008
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Specificații
ISBN-13: 9780817647377
ISBN-10: 0817647376
Pagini: 218
Ilustrații: XII, 224 p. 81 illus.
Dimensiuni: 155 x 235 x 15 mm
Greutate: 0.48 kg
Ediția:2009
Editura: Birkhäuser Boston
Colecția Birkhäuser
Seria Applied and Numerical Harmonic Analysis
Locul publicării:Boston, MA, United States
ISBN-10: 0817647376
Pagini: 218
Ilustrații: XII, 224 p. 81 illus.
Dimensiuni: 155 x 235 x 15 mm
Greutate: 0.48 kg
Ediția:2009
Editura: Birkhäuser Boston
Colecția Birkhäuser
Seria Applied and Numerical Harmonic Analysis
Locul publicării:Boston, MA, United States
Public țintă
ResearchCuprins
Review of Algebra.- Permutations and Permutation Matrices.- Finite Fourier Transform.- Convolution and Correlation.- Discrete Chirps.- Zak Transform.- Zak Space Correlation Formula.- Zak Space Representation of Chirps.- #x002A;-Permutations.- Permutation Sequences.- Modulation.- Sequence Sets.- Echo Analysis.- Sequence Shaping.- Problems.
Recenzii
From the reviews:
"The book … develops a new theory leading to systematic sequence design in time-frequency space. The essential tool of this interesting method is the finite Zak transform, which provides sparse representations for the discrete Fourier transform, cyclic convolution, and correlation. Using this Zak representation, the authors construct a large class of sequence sets satisfying pairwise ideal correlation. … This interesting and well-written book will be a useful reference text for graduate students, researchers, and engineers interested in radar/sonar signal processing or communication systems." (Manfred Tasche, Zentralblatt MATH, Vol. 1160, 2009)
"The book … develops a new theory leading to systematic sequence design in time-frequency space. The essential tool of this interesting method is the finite Zak transform, which provides sparse representations for the discrete Fourier transform, cyclic convolution, and correlation. Using this Zak representation, the authors construct a large class of sequence sets satisfying pairwise ideal correlation. … This interesting and well-written book will be a useful reference text for graduate students, researchers, and engineers interested in radar/sonar signal processing or communication systems." (Manfred Tasche, Zentralblatt MATH, Vol. 1160, 2009)
Textul de pe ultima copertă
This self-contained book develops theory and algorithms leading to systematic sequence design in time-frequency space. The primary tool used is the Zak transform, which provides sparse representation for the Fourier transform, convolution, and correlation. Using this multi-dimensional representation, the authors construct a large class of sequence sets satisfying pairwise ideal correlation. The complex algebraic analysis of sequences is replaced by an elegant and efficient geometric analysis of images, whose advantage is realized as an N to N! increase in the number of ideal sequence sets.
Topics and features:
* Mathematical development of the theory is illustrated with many examples.
* Standard communication theory and Zak space methods are numerically compared.
* Application areas covered include pulse radar and sonar, multi-beam radar and sonar imaging systems, remote identification of dielectrics, and code division multiple-access communication.
* Background is provided in two introductory chapters on matrix algebra, tensor products, and permutation groups.
* A list of open problems is presented and directions for further research are discussed.
Ideal Sequence Design in Time-Frequency Space is an excellent reference text for graduate students, researchers, and engineers interested in radar, sonar, and communication systems. The work may also be used as a supplementary textbook for a graduate course or seminar on sequence design in time-frequency space.
Topics and features:
* Mathematical development of the theory is illustrated with many examples.
* Standard communication theory and Zak space methods are numerically compared.
* Application areas covered include pulse radar and sonar, multi-beam radar and sonar imaging systems, remote identification of dielectrics, and code division multiple-access communication.
* Background is provided in two introductory chapters on matrix algebra, tensor products, and permutation groups.
* A list of open problems is presented and directions for further research are discussed.
Ideal Sequence Design in Time-Frequency Space is an excellent reference text for graduate students, researchers, and engineers interested in radar, sonar, and communication systems. The work may also be used as a supplementary textbook for a graduate course or seminar on sequence design in time-frequency space.
Caracteristici
Applications to radar, sonar, and communication systems A rigorous mathematical development is illustrated with many examples Numerous tables compare signal sets satisfying good correlation properties attainable by standard communication theory methods versus Zak space methods A variety of mathematical and application-oriented open problems are discussed For graduate students, researchers, and engineers in radar, sonar, and communication systems. May be used as a supplementary textbook for a graduate course or seminar on sequence design in time-frequency space