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Orthogonal designs = Hadamard matric...
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Seberry, Jennifer.
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Orthogonal designs = Hadamard matrices, quadratic forms and algebras /
Record Type:
Electronic resources : Monograph/item
Title/Author:
Orthogonal designs/ by Jennifer Seberry.
Reminder of title:
Hadamard matrices, quadratic forms and algebras /
Author:
Seberry, Jennifer.
Published:
Cham :Springer International Publishing : : 2017.,
Description:
xxiii, 453 p. :ill., digital ;24 cm.
[NT 15003449]:
1 Orthogonal Designs -- 2 Non-existence Results -- 3 Algebraic Theory of Orthogonal Designs -- 4 Orthogonal Designs Constructed via Plug-in Matrices -- 5 Amicable Orthogonal Designs -- 6 Product Designs and Repeat Designs (Gastineau-Hills) -- 7 Techniques -- 8 Robinson's Theorem -- 9 Hadamard Matrices and Asymptotic Orthogonal Designs -- 10 Complex, Quaternion and Non Square Orthogonal Designs -- Appendix: A Orthogonal Designs in Order 12,24,48 and 3.q -- B Orthogonal Designs in Order 20, 40 and 80 -- C Orthogonal Designs in Order 28 and 56 -- D Orthogonal Designs in Order 36, 72 -- E Orthogonal Designs in order 44 -- F Orthogonal Designs in Powers of 2 -- G Some Complementary Sequences -- H Product Designs -- References.
Contained By:
Springer eBooks
Subject:
Orthogonal polynomials. -
Online resource:
http://dx.doi.org/10.1007/978-3-319-59032-5
ISBN:
9783319590325
Orthogonal designs = Hadamard matrices, quadratic forms and algebras /
Seberry, Jennifer.
Orthogonal designs
Hadamard matrices, quadratic forms and algebras /[electronic resource] :by Jennifer Seberry. - Cham :Springer International Publishing :2017. - xxiii, 453 p. :ill., digital ;24 cm.
1 Orthogonal Designs -- 2 Non-existence Results -- 3 Algebraic Theory of Orthogonal Designs -- 4 Orthogonal Designs Constructed via Plug-in Matrices -- 5 Amicable Orthogonal Designs -- 6 Product Designs and Repeat Designs (Gastineau-Hills) -- 7 Techniques -- 8 Robinson's Theorem -- 9 Hadamard Matrices and Asymptotic Orthogonal Designs -- 10 Complex, Quaternion and Non Square Orthogonal Designs -- Appendix: A Orthogonal Designs in Order 12,24,48 and 3.q -- B Orthogonal Designs in Order 20, 40 and 80 -- C Orthogonal Designs in Order 28 and 56 -- D Orthogonal Designs in Order 36, 72 -- E Orthogonal Designs in order 44 -- F Orthogonal Designs in Powers of 2 -- G Some Complementary Sequences -- H Product Designs -- References.
Orthogonal designs have proved fundamental to constructing code division multiple antenna systems for more efficient mobile communications. Starting with basic theory, this book develops the algebra and combinatorics to create new communications modes. Intended primarily for researchers, it is also useful for graduate students wanting to understand some of the current communications coding theories.
ISBN: 9783319590325
Standard No.: 10.1007/978-3-319-59032-5doiSubjects--Topical Terms:
558372
Orthogonal polynomials.
LC Class. No.: QA404.5
Dewey Class. No.: 515.55
Orthogonal designs = Hadamard matrices, quadratic forms and algebras /
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Hadamard matrices, quadratic forms and algebras /
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by Jennifer Seberry.
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1 Orthogonal Designs -- 2 Non-existence Results -- 3 Algebraic Theory of Orthogonal Designs -- 4 Orthogonal Designs Constructed via Plug-in Matrices -- 5 Amicable Orthogonal Designs -- 6 Product Designs and Repeat Designs (Gastineau-Hills) -- 7 Techniques -- 8 Robinson's Theorem -- 9 Hadamard Matrices and Asymptotic Orthogonal Designs -- 10 Complex, Quaternion and Non Square Orthogonal Designs -- Appendix: A Orthogonal Designs in Order 12,24,48 and 3.q -- B Orthogonal Designs in Order 20, 40 and 80 -- C Orthogonal Designs in Order 28 and 56 -- D Orthogonal Designs in Order 36, 72 -- E Orthogonal Designs in order 44 -- F Orthogonal Designs in Powers of 2 -- G Some Complementary Sequences -- H Product Designs -- References.
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Orthogonal designs have proved fundamental to constructing code division multiple antenna systems for more efficient mobile communications. Starting with basic theory, this book develops the algebra and combinatorics to create new communications modes. Intended primarily for researchers, it is also useful for graduate students wanting to understand some of the current communications coding theories.
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Mathematics and Statistics (Springer-11649)
based on 0 review(s)
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