Stochastic Parity Games on Lossy Channel Systems
Computer Science and Game Theory
2013-06-14 v2 Logic in Computer Science
Abstract
We give an algorithm for solving stochastic parity games with almost-sure winning conditions on lossy channel systems, for the case where the players are restricted to finite-memory strategies. First, we describe a general framework, where we consider the class of 2.5-player games with almost-sure parity winning conditions on possibly infinite game graphs, assuming that the game contains a finite attractor. An attractor is a set of states (not necessarily absorbing) that is almost surely re-visited regardless of the players' decisions. We present a scheme that characterizes the set of winning states for each player. Then, we instantiate this scheme to obtain an algorithm for stochastic game lossy channel systems.
Keywords
Cite
@article{arxiv.1305.5228,
title = {Stochastic Parity Games on Lossy Channel Systems},
author = {Parosh Aziz Abdulla and Lorenzo Clemente and Richard Mayr and Sven Sandberg},
journal= {arXiv preprint arXiv:1305.5228},
year = {2013}
}
Comments
19 pages