English

On the Hierarchies for Deterministic, Nondeterministic and Probabilistic Ordered Read-k-times Branching Programs

Computational Complexity 2024-04-05 v1

Abstract

The paper examines hierarchies for nondeterministic and deterministic ordered read-kk-times Branching programs. The currently known hierarchies for deterministic kk-OBDD models of Branching programs for k=o(n1/2/log3/2n) k=o(n^{1/2}/\log^{3/2}n) are proved by B. Bollig, M. Sauerhoff, D. Sieling, and I. Wegener in 1998. Their lower bound technique was based on communication complexity approach. For nondeterministic kk-OBDD it is known that, if kk is constant then polynomial size kk-OBDD computes same functions as polynomial size OBDD (The result of Brosenne, Homeister and Waack, 2006). In the same time currently known hierarchies for nondeterministic read kk-times Branching programs for k=o(logn/loglogn)k=o(\sqrt{\log{n}}/\log\log{n}) are proved by Okolnishnikova in 1997, and for probabilistic read kk-times Branching programs for klogn/3k\leq \log n/3 are proved by Hromkovic and Saurhoff in 2003. We show that increasing kk for polynomial size nodeterministic kk-OBDD makes model more powerful if kk is not constant. Moreover, we extend the hierarchy for probabilistic and nondeterministic kk-OBDDs for k=o(n/logn) k=o(n/ \log n). These results extends hierarchies for read kk-times Branching programs, but kk-OBDD has more regular structure. The lower bound techniques we propose are a "functional description" of Boolean function presented by nondeterministic kk-OBDD and communication complexity technique. We present similar hierarchies for superpolynomial and subexponential width nondeterministic kk-OBDDs. Additionally we expand the hierarchies for deterministic kk-OBDDs using our lower bounds for k=o(n/logn) k=o(n/ \log n). We also analyze similar hierarchies for superpolynomial and subexponential width kk-OBDDs.

Keywords

Cite

@article{arxiv.1612.06092,
  title  = {On the Hierarchies for Deterministic, Nondeterministic and Probabilistic Ordered Read-k-times Branching Programs},
  author = {Kamil Khadiev},
  journal= {arXiv preprint arXiv:1612.06092},
  year   = {2024}
}

Comments

30 pages

R2 v1 2026-06-22T17:27:54.132Z