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The research of tool integration technology for complex products#x2019; collaborative simulation platform

机译:复杂产品协作仿真平台工具集成技术研究

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The collaborative simulation for complex products needs seamless integration of multi-discipline tool software on collaborative simulation platform. However, many kinds of tool software do not provide Application Programming Interface (API), which is vital for collaborative simulation. Under the technical framework of complex products’ collaborative simulation platform, the paper proposes three methods to realize tool software packaging when the tool software does not provide API. They are the method of calling solver directly, the method of tool interface module and that of secondary integration. The method of calling solver directly realizes interaction between tool software and platform by seeking a way to call solver from background directly; the method of tool interface module adds user defined module to the model of tool software as a way for the interaction between tool software and the outside. The two methods are all dedicated to constructing a user defined uniform tool engine interface for the platform to call. The method of secondary integration realizes integration indirectly by using tool software which has been integrated to the platform. The paper also presents the process of realization of the three methods by giving an example of integrating MSC EASY5 tool software. By doing so, we prove their correctness and analyze their pros and cons.
机译:复杂产品的协作仿真需要在协作仿真平台上无缝集成多学科工具软件。然而,许多类型的工具软件不提供应用程序编程接口(API),这对于协作仿真至关重要。在复杂产品协作仿真平台的技术框架下,该论文提出了三种方法,以实现工具软件不提供API的工具软件包装。它们是直接调用求解器的方法,刀具接口模块的方法和辅助集成的方法。呼叫求解器的方法直接在直接从背景中调用求解器的方式实现工具软件和平台之间的交互;工具接口模块的方法将用户定义的模块添加到工具软件的模型中,作为工具软件与外部之间的交互的方式。这两种方法都专用于构建用户定义的均匀工具引擎接口,用于调用平台。二次集成方法通过使用已集成到平台的工具软件来实现间接的集成。本文还通过提供集成MSC Easy5工具软件的示例,提出了三种方法的过程。通过这样做,我们证明了他们的正确性并分析了他们的利弊。

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