English

Probabilistic methods of bypassing the maze using stones and a random number sensor

Data Structures and Algorithms 2020-05-12 v2 Probability

Abstract

In this paper, some open questions that are posed in Ajans' dissertation continue to be addressed: a robot bypass with a generator of random bits of integer spaces in the presence of a stone and a subspace of flags. This work is devoted to bypassing the maze with a finite state machine with a random bit generator. This task is part of the rapidly evolving theme of bypassing the maze by various finite state machines. or their teams, which is closely related to problems from the theory of computational complexity and probability theory. In this paper, it is shown at what dimensions a robot with a random bit generator and a stone can bypass integer space with a subspace of flags. In this paper, we will study the behavior of a finite state machine with a random bit generator on integer spaces. In particular, it was proved that the robot bypasses  zs2 \ zs ^ 2 and cannot bypass  zs3 \ zs ^ 3 ; a robot with a stone bypasses  zs4 \ zs ^ 4 and cannot bypass  zs5 \ zs ^ 5 ; a robot with a stone and a flag bypasses  zs6 \ zs ^ 6 and cannot bypass  zs7 \ zs ^ 7 ; a robot with a stone and a plane of flags bypasses  zs8 \ zs ^ 8 and cannot bypass  zs9 \ zs ^ 9 .

Cite

@article{arxiv.1912.04701,
  title  = {Probabilistic methods of bypassing the maze using stones and a random number sensor},
  author = {E. G. Kondakova and A. Ya. Kanel-Belov},
  journal= {arXiv preprint arXiv:1912.04701},
  year   = {2020}
}

Comments

25 pages, in Russian, MIPT, BIU, SZU, This work was supported by the Russian Science Foundation, grant No. 17-11-01377, to appear in Chebyshevskyi sbornik

R2 v1 2026-06-23T12:41:27.253Z