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Replicators: Transformations to Address Model Scalability

机译:复制器:解决模型可伸缩性的转换

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摘要

In Model Integrated Computing, it is desirable to evaluate different design alternatives as they relate to issues of scalability. A typical approach to address scalability is to create a base model that captures the key interactions of various components (i.e., the essential properties and connections among modeling entities). A collection of base models can be adorned with necessary information to characterize their replication. In current practice, replication is accomplished by scaling the base model manually. This is a time-consuming process that represents a source of error, especially when there are deep interactions between model components. As an alternative to the manual process, this paper presents the idea of a replicator, which is a model transformation that expands the number of elements from the base model and makes the correct connections among the generated modeling elements. The paper motivates the need for replicators through case studies taken from models supporting different domains.
机译:在模型集成计算中,希望评估与可伸缩性问题相关的不同设计替代方案。解决可伸缩性的一种典型方法是创建一个基本模型,该模型捕获各个组件的关键交互(即建模实体之间的基本属性和连接)。基本模型的集合可以装饰有必要的信息,以表征其复制。在当前实践中,复制是通过手动缩放基本模型来完成的。这是一个耗时的过程,代表了一个错误源,尤其是当模型组件之间存在深层交互时。作为手动过程的替代方法,本文介绍了复制器的概念,它是一种模型转换,可扩展基本模型中元素的数量并在生成的建模元素之间建立正确的连接。本文通过从支持不同领域的模型中进行案例研究来激发复制者的需求。

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