scholarly journals Time Granularity in System-of-Systems Simulation of Infrastructure Networks

Author(s):  
Mateusz Iwo Dubaniowski ◽  
Hans R. Heinimann
Author(s):  
Mateusz Iwo Dubaniowski ◽  
Hans Rudolf Heinimann

A system-of-systems (SoS) approach is often used for simulating disruptions to business and infrastructure system networks allowing for integration of several models into one simulation. However, the integration is frequently challenging as each system is designed individually with different characteristics, such as time granularity. Understanding the impact of time granularity on propagation of disruptions between businesses and infrastructure systems and finding the appropriate granularity for the SoS simulation remain as major challenges. To tackle these, we explore how time granularity, recovery time, and disruption size affect the propagation of disruptions between constituent systems of an SoS simulation. To address this issue, we developed a high level architecture (HLA) simulation of three networks and performed a series of simulation experiments. Our results revealed that time granularity and especially recovery time have huge impact on propagation of disruptions. Consequently, we developed a model for selecting an appropriate time granularity for an SoS simulation based on expected recovery time. Our simulation experiments show that time granularity should be less than 1.13 of expected recovery time. We identified some areas for future research centered around extending the experimental factors space.


2014 ◽  
Vol 548-549 ◽  
pp. 1311-1318
Author(s):  
Zhi Qiang Zhao ◽  
Jia Xin Hao

The high-performance parallel computing (HPPC) has a better overall performance and higher productivity, for a generical large-scale army equipment system of systems (AESoS) simulation, and the runtime efficiency can be multiplied several tenfold to several hundredfold. The requirement analysis of simulation framework of AESoS based on HPPC was proposed. After the simulation framework of AESoS based on HPPC and its key techniques were discussed, the simulation framework of AESoS Based HPPC was designed. it is of great significance to offer certain references for the engineering application in the simulation fields of AESoS based on HPPC.


2021 ◽  
Author(s):  
Prajwal S. Prakasha ◽  
Björn Nagel ◽  
San Kilkis ◽  
Nabih Naeem ◽  
Patrick Ratei

2021 ◽  
Author(s):  
Prajwal S. Prakasha ◽  
Patrick Ratei ◽  
Nabih Naeem ◽  
Björn Nagel ◽  
Oliver Bertram

Author(s):  
Thrishantha Nanayakkara ◽  
Ferat Sahin ◽  
Mo Jamshidi

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