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Software framework for distributed experimental–computational simulation of structural systems

2005/08/12 by Yoshikazu Takahashi, Gregory L. Fenves
Computer Science · Engineering · #Computer science #Distributed algorithm #Distributed computing #Distributed design patterns #Engineering #Hydraulic and Pneumatic Systems #Modeling and Simulation Systems #Object-oriented programming #Operating system #Range (aeronautics) #Real-time simulation and control systems #Set (abstract data type) #Simulation #Simulation software #Software

paper · doi:10.1002/eqe.518

openalex publication_date 2005/08/12 · openalex created_date 2025/10/10 · openalex updated_date 2026/07/27

Abstract

Abstract Supported by the recent advancement of experimental test methods, numerical simulation, and high‐speed communication networks, it is possible to distribute geographically the testing of structural systems using hybrid experimental–computational simulation. One of the barriers for this advanced testing is the lack of flexible software for hybrid simulation using heterogeneous experimental equipment. To address this need, an object‐oriented software framework is designed, developed, implemented, and demonstrated for distributed experimental–computational simulation of structural systems. The software computes the imposed displacements for a range of test methods and co‐ordinates the control of local and distributed configurations of experimental equipment. The object‐oriented design of the software promotes the sharing of modules for experimental equipment, test set‐ups, simulation models, and test methods. The communication model for distributed hybrid testing is similar to that used for parallel computing to solve structural simulation problems. As a demonstration, a distributed pseudodynamic test was conducted using a client–server approach, in which the server program controlled the test equipment in Japan and the client program performed the computational simulation in the United States. The distributed hybrid simulation showed that the software framework is flexible and reliable. Copyright © 2005 John Wiley & Sons, Ltd.

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