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CBE-Conveyor: A Case-Based Reasoning System to Assist Engineers in Designing Conveyor Systems

机译:CBE输送机:一种基于案例的推理系统,可以帮助工程师设计输送系统

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In this paper, we address the use of CBR in collaboration with numerical engineering models. This collaborative combination has a particular application in engineering domains where numerical models are used. We term this domain "Case Based Engineering" (CBE), and present the general architecture of a CBE system. We define and discuss the general characteristics of CBE and the special problems which arise. These are: the handling of engineering constraints of both continuous and nominal kind; interpolation over both continuous and nominal variables, and conformability for interpolation. In order to illustrate the utility of the method proposed, and to provide practical examples of the general theory, the paper describes a practical application of the CBE architecture, known as CBE-CONVEYOR, which has been implemented by the authors. Pneumatic conveying is an important transportation technology in the solid bulks conveying industry. One of the major industry concerns is the attrition of powders and granules during pneumatic conveying. To minimize the fraction of particles during pneumatic conveying, engineers want to know what design parameters they should use in building a conveyor system. To do this, engineers often run simulations in a repetitive manner to find appropriate input parameters. CBE-Conveyor is shown to speed up conventional methods for searching for solutions, and to solve problems directly that would otherwise require considerable intervention from the engineer.
机译:在本文中,我们通过与数值工程模型合作解决CBR的使用。该协同组合在使用数值模型的工程域中具有特定应用。我们将此域名“基于案例的工程”(CBE)术语,并呈现CBE系统的常规架构。我们定义并讨论CBE的一般特征和出现的特殊问题。这些是:处理连续和名义上的工程限制;对连续和标称变量的插值,并对插值的形式性。为了说明所提出的方法的效用,并提供了一般理论的实际示例,介绍了CBE架构的实际应用,称为CBE输送机,这已经由作者实施。气动输送是固体散货输送行业的重要运输技术。其中一个主要行业担忧是气动输送过程中粉末和颗粒的损失。为了在气动输送过程中最小化颗粒的一部分,工程师希望了解他们应该在建造输送系统时使用的设计参数。为此,工程师经常以重复方式运行模拟以找到适当的输入参数。 CBE输送机被证明可以加快寻找解决方案的传统方法,并直接解决问题,否则将需要从工程师的相当长的干预。

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