A Theoretical approach to the computational complexity measure of abstract DEVS simulators

Author:

Diouf Yoro1ORCID,Maïga Oumar Y.2,Traore Mamadou K.3

Affiliation:

1. African University of Science and Technology (AUST), P.M.B 681, Garki, Abuja F.C.T, Nigeria

2. Université des Sciences, Techniques et Technologies de Bamako (USTTB), Hamdalaye ACI 2000 Rue: 405, Porte: 359, BP: E 423, Bamako, Mali, West Africa

3. Université de Bordeaux, 351 cours de la Libération CS 10004, 33405 Talence Cedex, France

Abstract

DEVS is a sound Modeling and Simulation (M&S) framework that describes a model in a modular and hierarchical way. It comes along with an abstract simulation algorithm which defines its operational semantics. Many variants of such an algorithm have been proposed by DEVS researchers. Yet, the proper interpretation and analysis of the computational complexity of such approaches have not been systematically addressed and defined. As systems become larger and more complex, the efficiency of the DEVS simulation algorithms in terms of time complexity measure becomes a major issue. Therefore, it is necessary to devise a method for computing this complexity. This paper proposes a generic method to address such an issue, taking advantage of the recursion embedded in the triggered-by-message principle of the DEVS simulation protocol. The applicability of the method is shown through the complexity analysis of various DEVS simulation algorithms.

Funder

African Development Bank

Publisher

World Scientific Pub Co Pte Ltd

Subject

Computer Science Applications,Modeling and Simulation,General Engineering,General Mathematics

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