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Networked Assembly of Mechatronic Linear Physical System Models

机译:机电线性物理系统模型的网络化组装

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Engineering design is evolving into a global activity. Globally distributed design requires efficient global distribution of models of dynamic physical systems through computer networks. These models must describe the external input-output behavior of the electrical, mechanical, fluid, and thermal dynamics of engineering systems. An efficient system model assembly method is then required to assemble these component system models into a model of a yet higher-level dynamic system. Done recursively, these higher-level system models become possible components for yet higher-level analytical models composed of external model equations in the same standardized format as that of the lowest level components. Real-time, automated exchange, and assembly of engineering dynamic models over a global network requires four characteristics. The models exchanged must have a unique standard format so that they can be exchanged and assembled by an automated process. The exchange of model information must be executed in a single-query transmission to minimize network load. The models must describe only external behavior to protect internal model details. Finally, the assembly process must be recursive so that the transfer and assembly processes do not change with the level of the model exchanged or assembled. This paper will introduce the modular modeling method (MMM), a modeling strategy that satisfies these requirements. The MMM distributes and assembles linear dynamic physical system models with a dynamic matrix representation. Using the MMM method, dynamic models of complex assemblies can be built and distributed while hiding the topology and characteristics of their dynamic subassemblies.
机译:工程设计正在演变为一项全球活动。全球分布的设计要求通过计算机网络有效地全局分布动态物理系统的模型。这些模型必须描述工程系统的电气,机械,流体和热动力学的外部输入输出行为。然后需要一种有效的系统模型组装方法,以将这些组件系统模型组装成更高级别的动态系统的模型。递归地完成后,这些较高级的系统模型就可以成为由外部模型方程式组成的较高级分析模型的可能组件,这些方程式的标准格式与最低级组件相同。在全球网络上实时,自动交换和组装工程动态模型需要四个特征。交换的模型必须具有唯一的标准格式,以便可以通过自动化过程进行交换和组装。必须在单查询传输中执行模型信息的交换,以最大程度地减少网络负载。模型必须仅描述外部行为,以保护内部模型细节。最后,组装过程必须是递归的,以使转移和组装过程不会随交换或组装模型的级别而改变。本文将介绍模块化建模方法(MMM),这是一种满足这些要求的建模策略。 MMM分发和组装具有动态矩阵表示的线性动态物理系统模型。使用MMM方法,可以构建和分发复杂装配体的动态模型,同时隐藏其动态子装配体的拓扑和特征。

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    Clark J. Radcliffe, ProfessorDepartment of Mechanical Engineering, Michigan State University, East Lansing, MI 48824Eliot Motato, Assistant ProfessorPontificia Universidad Javeriana, Cali, ColombiaDrew ReichenbachPowertrain Attributes, Fuel Economy CAE, Ford Motor Company, Dearborn, MI 48121;

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