Hadamard matrices, orthogonal designs and amicable orthogonal designs have a number of applications in coding theory, cryptography, wireless network communication and so on. Product designs were introduced by Robinson in order to construct orthogonal designs especially full orthogonal designs (no zero entries) with maximum number of variables for some orders. He constructed product designs of orders 4, 8 and 12 and types (1(3); 1(3); 1),(1(3); 1(3); 5) and (1(3); 1(3); 9b), respectively. In this paper, we first show that there does not exist any product design of order n ≠ 4, 8, 12 and type (1(3); 1(3); n − 3), where the notation u(k) is used to show that u repeats k times. Then, following the Holzmann and Kharaghani’s methods, we construct some classes of disjoint and some classes of full amicable orthogonal designs, and we obtain an infinite class of full amicable orthogonal designs. Moreover, a full amicable orthogonal design of order 29 and type (26(8); 26(8)) is constructed.
Some constructions for amicable orthogonal designs / Ghaderpour, E.. - In: THE AUSTRALASIAN JOURNAL OF COMBINATORICS. - ISSN 2202-3518. - 63:3(2015), pp. 374-384.
Some constructions for amicable orthogonal designs
Ghaderpour E.
2015
Abstract
Hadamard matrices, orthogonal designs and amicable orthogonal designs have a number of applications in coding theory, cryptography, wireless network communication and so on. Product designs were introduced by Robinson in order to construct orthogonal designs especially full orthogonal designs (no zero entries) with maximum number of variables for some orders. He constructed product designs of orders 4, 8 and 12 and types (1(3); 1(3); 1),(1(3); 1(3); 5) and (1(3); 1(3); 9b), respectively. In this paper, we first show that there does not exist any product design of order n ≠ 4, 8, 12 and type (1(3); 1(3); n − 3), where the notation u(k) is used to show that u repeats k times. Then, following the Holzmann and Kharaghani’s methods, we construct some classes of disjoint and some classes of full amicable orthogonal designs, and we obtain an infinite class of full amicable orthogonal designs. Moreover, a full amicable orthogonal design of order 29 and type (26(8); 26(8)) is constructed.File | Dimensione | Formato | |
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