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Service-oriented, cross-platform and high-level machining simulation

机译:面向服务的跨平台高级加工仿真

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摘要

With the development of manufacturing, Web-based numerical control machining simulation has become an important part to realise networked manufacturing and make the training for operators easier. Although some research about it is available, most of them are based on G&M code that has inherent drawbacks such as vendor-specific nature, incomplete data, irreversible data conversions and lack of accuracy. These limitations hinder the development of a truthful simulation system; they are dependent on specific platform and have bad interoperability, which limits their use. Therefore, there is a requirement for high-level data model to be developed and utilised that can assist with accurate simulation for machining processes. In addition, there is also a need to take account of computer heterogeneous environment and online service. To solve these issues, this article proposes service-oriented, cross-platform and high-level machining simulation solution that utilises high-level data such as standard for the exchange of product data and standard for the exchange of product data-compliant numerical control in order to produce an informative and truthful simulation and utilises the proposed browser/server-based model-view- controller-communication-data pattern, Java and Web service technology in order to produce platform-independent and service-oriented machining simulation. The outcome of the research provides a better informed simulation environment, makes the training for operators easier and promotes the development of networked manufacturing.
机译:随着制造业的发展,基于Web的数控加工仿真已成为实现网络化制造和简化操作员培训的重要组成部分。尽管可以进行一些研究,但大多数研究都基于G&M代码,这些代码具有固有的缺陷,例如特定于供应商的性质,数据不完整,数据转换不可逆以及缺乏准确性。这些限制阻碍了真实仿真系统的发展。它们取决于特定的平台,并且互操作性差,这限制了它们的使用。因此,需要开发和利用可以帮助对加工过程进行精确仿真的高级数据模型。另外,还需要考虑计算机异构环境和在线服务。为了解决这些问题,本文提出了一种面向服务,跨平台和高级的加工仿真解决方案,该解决方案利用高级数据(例如用于交换产品数据的标准和用于交换兼容产品数据的数控系统的标准)为了产生内容丰富且真实的仿真,并利用提出的基于浏览器/服务器的模型-视图-控制器-通信数据模式,Java和Web服务技术来产生独立于平台和面向服务的加工仿真。研究的结果提供了一个更好的知情模拟环境,使操作员的培训更加容易,并促进了网络化制造的发展。

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