首页> 外文会议>ASME International Design Engineering Technical Conferences and Computers and Information in Engineering Conference 2007 >A PARTITIONED ITERATION METHOD EMPLOYING CG-FOLLOWING REFERENCE FRAMES FOR DISTRIBUTED SIMULATION OF FLEXIBLE MULTIBODY SYSTEMS
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A PARTITIONED ITERATION METHOD EMPLOYING CG-FOLLOWING REFERENCE FRAMES FOR DISTRIBUTED SIMULATION OF FLEXIBLE MULTIBODY SYSTEMS

机译:运用CG跟踪参考框架的柔性多体系统分布式仿真的分段迭代法。

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A distributed simulation platform, denoted as D-Sim, has been developed previously by our research group, which comprises three essential attributes: a general XML description for models suitable for both leaf and integrated models, a gluing algorithm, which only relies on the interface information to integrate subsystem models, and a logical distributed simulation architecture that can be realized using any connection-oriented distributed technology. The overarching research focus is to integrate heterogeneous subsystem models, e.g., multibody dynamics subsystems models and finite element subsystems models and to conduct seamlessly integrated simulation and design tasks in a distributed computing environment. A Partitioned Iteration Method (PIM) is proposed in this paper, which decouples the rigid body motion from elastic deformation of the simulated system using an iteration scheme. The method employs a CG-following reference frame for each deformable body in the distributed simulation of flexible multibody systems. The resultant simulation system can be used to integrate distributed deformable bodies D-Sim, while allowing large rigid body motions among the bodies or subsystems. It also enables using independent simulation servers; where each server can run commercially available or research-based MBD and/or FEM codes. Examples are provided that demonstrate the performance of the method and also how to decouple and integrate rigid body motion and elastic deformation using the developed gluing algorithm.
机译:我们的研究小组先前已经开发了一个分布式仿真平台,称为D-Sim,它包含三个基本属性:适用于叶子和集成模型的模型的通用XML描述,仅依赖接口的粘合算法信息以集成子系统模型,以及可以使用任何面向连接的分布式技术实现的逻辑分布式仿真体系结构。总体研究重点是集成异构子系统模型,例如多体动力学子系统模型和有限元子系统模型,并在分布式计算环境中进行无缝集成的仿真和设计任务。本文提出了一种分区迭代方法(PIM),该方法使用迭代方案将刚体运动与仿真系统的弹性变形解耦。该方法在柔性多体系统的分布式仿真中为每个可变形体采用CG跟随参考系。所得的仿真系统可用于集成分布式可变形体D-Sim,同时允许在实体或子系统之间进行较大的刚体运动。它还可以使用独立的模拟服务器;每个服务器都可以运行市售的或基于研究的MBD和/或FEM代码。提供的示例说明了该方法的性能,以及如何使用已开发的粘合算法来解耦和整合刚体运动和弹性变形。

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