English

New Sequences Design from Weil Representation with Low Two-Dimensional Correlation in Both Time and Phase Shifts

Information Theory 2011-05-16 v2 Discrete Mathematics math.IT Representation Theory

Abstract

For a given prime pp, a new construction of families of the complex valued sequences of period pp with efficient implementation is given by applying both multiplicative characters and additive characters of finite field Fp\mathbb{F}_p. Such a signal set consists of p2(p2)p^2(p-2) time-shift distinct sequences, the magnitude of the two-dimensional autocorrelation function (i.e., the ambiguity function) in both time and phase of each sequence is upper bounded by 2p2\sqrt{p} at any shift not equal to (0,0)(0, 0), and the magnitude of the ambiguity function of any pair of phase-shift distinct sequences is upper bounded by 4p4\sqrt{p}. Furthermore, the magnitude of their Fourier transform spectrum is less than or equal to 2. A proof is given through finding a simple elementary construction for the sequences constructed from the Weil representation by Gurevich, Hadani and Sochen. An open problem for directly establishing these assertions without involving the Weil representation is addressed.

Keywords

Cite

@article{arxiv.0812.4487,
  title  = {New Sequences Design from Weil Representation with Low Two-Dimensional Correlation in Both Time and Phase Shifts},
  author = {Zilong Wang and Guang Gong},
  journal= {arXiv preprint arXiv:0812.4487},
  year   = {2011}
}

Comments

23 pages, accepted by IEEE Transactions on Information Theory