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Colored petri nets based modeling and simulation of the static and dynamic allocation policies of the asynchronous bandwidth in the fieldbus protocol

Identifieur interne : 000380 ( Main/Exploration ); précédent : 000379; suivant : 000381

Colored petri nets based modeling and simulation of the static and dynamic allocation policies of the asynchronous bandwidth in the fieldbus protocol

Auteurs : Adel Ben Mnaouer [Japon] ; Takashi Sekiguchi [Japon] ; Yasumasa Fujii [Japon] ; Toru Ito [Japon] ; Haruki Tanaka [Japon]

Source :

RBID : ISTEX:EBDB034B794F0838FB27686FE1F3369CC221641A

Abstract

Abstract: This paper presents a Colored Petri net based modeling, simulation and analysis of the centralized architecture of the timedtoken Fieldbus protocol. In such an architecture, the asynchronous traffic classes are served by using an emulation of a “circulated” timed-token mechanism, while the synchronous one is served by a centralized scheduling mechanism. The performance evaluation is concerned with two different policies of asynchronous bandwidth allocations. The first is based on a Static Allocation Scheme (SAS), and the second is based on a Dynamic one (DAS), that uses the leftover bandwidth allocated to a specific station and adds it to the share of the following station dynamically. Considering a symmetric and an asymmetric system, four Hierarchical Timed Colored Petri Nets (HTCPN) were build, each corresponds to a specific system using either the SAS or the DAS. The simulation results show the superiority of the DAS over the SAS in improving the performance of the normal priority and time-available priority traffic classes in terms of increasing channel utilization, decreasing transfer delays and token delegation overheads.


Url:
DOI: 10.1007/BFb0097774


Affiliations:


Links toward previous steps (curation, corpus...)


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<div type="abstract" xml:lang="en">Abstract: This paper presents a Colored Petri net based modeling, simulation and analysis of the centralized architecture of the timedtoken Fieldbus protocol. In such an architecture, the asynchronous traffic classes are served by using an emulation of a “circulated” timed-token mechanism, while the synchronous one is served by a centralized scheduling mechanism. The performance evaluation is concerned with two different policies of asynchronous bandwidth allocations. The first is based on a Static Allocation Scheme (SAS), and the second is based on a Dynamic one (DAS), that uses the leftover bandwidth allocated to a specific station and adds it to the share of the following station dynamically. Considering a symmetric and an asymmetric system, four Hierarchical Timed Colored Petri Nets (HTCPN) were build, each corresponds to a specific system using either the SAS or the DAS. The simulation results show the superiority of the DAS over the SAS in improving the performance of the normal priority and time-available priority traffic classes in terms of increasing channel utilization, decreasing transfer delays and token delegation overheads.</div>
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