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Published in: Cryptography and Communications 6/2017

14-02-2017

A new family of arrays with low autocorrelation

Authors: Heiko Dietrich, Nathan Jolly

Published in: Cryptography and Communications | Issue 6/2017

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Abstract

Arrays with low autocorrelation are widely sought in applications; important examples are arrays whose periodic autocorrelation is zero for all nontrivial cyclic shifts, so-called perfect arrays. In 2001, Arasu and de Launey defined almost perfect arrays: these have size 2u×v and autocorrelation arrays with only two nonzero entries, namely 2u v and −2u v in positions (0,0) and (u,0), respectively. In this paper we present a new class of arrays with low autocorrelation: for an integer n≥1, we call an array n-perfect if it has size n u×v and if its autocorrelation array has only n nonzero entries, namely n u v λ i in position (i u,0) for i=0,1,…,n−1, where λ is a primitive n-th root of unity. Thus, an array is 1-perfect (2-perfect) if and only if it is (almost) perfect. We give examples and describe a recursive construction of families of n-perfect arrays of increasing size.

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Metadata
Title
A new family of arrays with low autocorrelation
Authors
Heiko Dietrich
Nathan Jolly
Publication date
14-02-2017
Publisher
Springer US
Published in
Cryptography and Communications / Issue 6/2017
Print ISSN: 1936-2447
Electronic ISSN: 1936-2455
DOI
https://doi.org/10.1007/s12095-017-0214-0

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