DocumentCode
45271
Title
New
-Ary Sequence Families With Low Correlation From the Array Structure of Sidelnikov Sequences
Author
Young-Tae Kim ; Dae San Kim ; Hong-Yeop Song
Author_Institution
Dept. of Electr. & Electron. Eng., Yonsei Univ., Seoul, South Korea
Volume
61
Issue
1
fYear
2015
fDate
Jan. 2015
Firstpage
655
Lastpage
670
Abstract
In this paper, we extend the construction by Vu and Gong for families of M-ary sequences of period q - 1 from the array structure of an M-ary Sidelnikov sequence of period q2 - 1, where q is a prime power and M|q - 1. The construction now applies to the cases of using any period qd -1 for 3 ≤ d <; (1/2)(√q - (2/√q) + 1) and q > 27. The proposed construction results in a family of M-ary sequences of period q-1 with: 1) the correlation magnitudes, which are upper bounded by (2d -1)√q +1 and 2) the asymptotic size of (M -1)qd-1/d as q increases. We also characterize some subsets of the above of size ~(r - 1)qd-1/d but with a tighter upper bound (2d - 2)√q + 2 on its correlation magnitude. We discuss reducing both time and memory complexities for the practical implementation of such constructions in some special cases. We further give some approximate size of the newly constructed families in general and an exact count when d is a prime power or a product of two distinct primes. The main results of this paper now give more freedom of tradeoff in the design of M-ary sequence family between the family size and the correlation magnitude of the family.
Keywords
computational complexity; sequences; M-ary Sidelnikov sequence; M-ary sequence family; array structure; correlation magnitude; memory complexity; prime power; time complexity; Arrays; Computer aided software engineering; Correlation; Educational institutions; Global Positioning System; Periodic structures; Upper bound; Cyclotomic Cosets; Cyclotomic cosets; Family of sequences with good crosscorrelation; Non-binary sequences; Polyphase sequences; Sequences for GNSS; Sidelnikov sequences; family of sequences with good crosscorrelation; non-binary sequences; polyphase sequences; sequences for GNSS;
fLanguage
English
Journal_Title
Information Theory, IEEE Transactions on
Publisher
ieee
ISSN
0018-9448
Type
jour
DOI
10.1109/TIT.2014.2371461
Filename
6960077
Link To Document