English

Bounds and Constructions for $\overline{3}$-Strongly Separable Codes with Length $3$

Discrete Mathematics 2017-01-11 v2 Information Theory math.IT

Abstract

As separable code (SC, IEEE Trans Inf Theory 57:4843-4851, 2011) and frameproof code (FPC, IEEE Trans Inf Theory 44:1897-1905, 1998) do in multimedia fingerprinting, strongly separable code (SSC, Des. Codes and Cryptogr.79:303-318, 2016) can be also used to construct anti-collusion codes. Furthermore, SSC is better than FPC and SC in the applications for multimedia fingerprinting since SSC has lower tracing complexity than that of SC (the same complexity as FPC) and weaker structure than that of FPC. In this paper, we first derive several upper bounds on the number of codewords of t\overline{t}-SSC. Then we focus on 3\overline{3}-SSC with codeword length 33, and obtain the following two main results: (1) An equivalence between an SSC and an SC. %Consequently a more tighter upper bound (3q2/4)(3q^2/4) and lower bound (q3/2)(q^{3/2}) on the number of codewords are obtained; (2) An improved lower bound Ω(q5/3+q4/3q)\Omega (q^{5/3}+q^{4/3}-q) on the size of a qq-ary SSC when q=q16q=q_1^6 for any prime power q1 1(mod6)q_1\equiv\ 1 \pmod 6, better than the before known bound q3\lfloor\sqrt{q}\rfloor^{3}, which is obtained by means of difference matrix and the known result on the subset of Fqn\mathbb{F}^{n}_q containing no three points on a line.

Keywords

Cite

@article{arxiv.1611.04349,
  title  = {Bounds and Constructions for $\overline{3}$-Strongly Separable Codes with Length $3$},
  author = {Xuli Zhang and Jing Jiang and Minquan Cheng},
  journal= {arXiv preprint arXiv:1611.04349},
  year   = {2017}
}

Comments

17 pages, separable codes, strongly separable codes,submitted to Cryptography and Communications

R2 v1 2026-06-22T16:51:21.175Z