Article ID Journal Published Year Pages File Type
8897783 Linear Algebra and its Applications 2018 22 Pages PDF
Abstract
A sequential dynamical system (SDS) consists of a graph, a set of local functions and an update schedule. A linear sequential dynamical system is an SDS whose local functions are linear. In this paper, we derive an explicit closed formula for any linear SDS as a synchronous dynamical system. We also show constructively, that any synchronous linear system can be expressed as a linear SDS, i.e. it can be written as a product of linear local functions. Furthermore, we study the connection between linear SDS and the incidence algebras of partially ordered sets (posets). Specifically, we show that the Möbius function of any poset can be computed via an SDS, whose graph is induced by the Hasse diagram of the poset. Finally, we prove a cut theorem for the Möbius functions of posets with respect to certain chain decompositions.
Related Topics
Physical Sciences and Engineering Mathematics Algebra and Number Theory
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