Exact Synchronization for Finite-State Sources

Nicholas F. Travers and James P. Crutchfield

Complexity Sciences Center
Mathematics Department
Physics Department
University of California at Davis
Davis, CA 95616

ABSTRACT: We analyze how an observer synchronizes to the internal state of a finite-state information source, using the ε-machine causal representation. Here, we treat the case of exact synchronization, when it is possible for the observer to synchronize completely after a finite number of observations. The more difficult case of strictly asymptotic synchronization is treated in a sequel. In both cases, we find that an observer, on average, will synchronize to the source state exponentially fast and that, as a result, the average accuracy in an observer's predictions of the source output approaches its optimal level exponentially fast as well. Additionally, we show here how to analytically calculate the synchronization rate for exact ε-machines and provide an efficient polynomial-time algorithm to test ε-machines for exactness.


Nicholas F. Travers and James P. Crutchfield, "Exact Synchronization for Finite-State Sources", J. Stat. Phys. 145:5 (2011) 1181-1201.
[pdf] 400 KB
Santa Fe Institute Working Paper 10-11-031.
arXiv:1008.4182 [nlin.CD].