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Integrating model-based system engineering with set-based concurrent engineering principles for reliability and manufacturability analysis of mechatronic products

机译:将基于模型的系统工程与基于集合的并行工程原理相集成,以进行机电产品的可靠性和可制造性分析

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The point-based approach consists of committing a set of requirements and a single design solution from the design space. This approach is time-consuming and often leads to deadline excess when developing a new complex system such as mechatronic systems. In fact, this approach could generate iterative loops between engineers in the downstream design stage to evaluate the manufacturability and the quality of the developed system. To overcome this issue, introducing a model-based system engineering (MBSE) approach in the upstream design stage hinged on set-based concurrent engineering (SBCE) principles is a good solution to diminish the exchange loops between engineers and to enhance efficiency in the design process. This approach consists in evaluating a large set of system solutions, then gradually narrowing these solutions until converging to a limited set of optimized solutions. In this article, a novel approach entitled Model based for reliability and manufacturability analysis (MBRMA) and based on model-based system engineering and set-based concurrent engineering in the preliminary design phases is used to filter out weak or costly solutions over time and to assess system engineer when adopting trade-off analysis. First, customer requirements, functional and structural aspect of the system are defined using SysML diagrams. Next, the application of the algorithm allows narrowing the design space, and finally, a trade-off analysis is carried out to select the best system architecture. The first contribution of this article is the creation of novel stereotypes of composition and allocation flows in a profile diagram between functions and alternative solutions. The second contribution is the implementation of an algorithm to analyze system robustness and to converge on the final set of optimized solutions. To test this newly developed model model based for reliability and manufacturability analysis (MBRMA), a case study of an air conditioning electrical compressor is considered to illustrate the various stages of this concurrent engineering approach.
机译:基于点的方法包括在设计空间中提交一组需求和一个设计解决方案。这种方法很耗时,在开发新的复杂系统(如机电系统)时通常会导致截止期限过长。实际上,这种方法可能会在下游设计阶段的工程师之间产生迭代循环,以评估可开发性和开发系统的质量。为了解决此问题,在上游设计阶段基于基于集合的并发工程(SBCE)原理引入基于模型的系统工程(MBSE)方法是减少工程师之间的交换循环并提高设计效率的一个很好的解决方案处理。该方法包括评估大量系统解决方案,然后逐渐缩小这些解决方案的范围,直到收敛到有限的一组优化解决方案。在本文中,采用了一种新颖的方法,名为“基于模型的可靠性和可制造性分析(MBRMA)”,并基于在初步设计阶段基于模型的系统工程和基于集合的并发工程,以随着时间的推移过滤出薄弱或代价高昂的解决方案,从而在进行权衡分析时评估系统工程师。首先,使用SysML图定义客户需求,系统的功能和结构方面。接下来,该算法的应用允许缩小设计空间,最后,进行权衡分析以选择最佳的系统架构。本文的第一个贡献是在功能和替代解决方案之间的剖析图中创建了新颖的构造和分配流程构造型。第二个贡献是实现了一种用于分析系统鲁棒性并收敛于优化解决方案最终集合的算法。为了测试基于可靠性和可制造性分析(MBRMA)的最新开发的模型模型,我们以空调电动压缩机的案例研究为例,说明这种并行工程方法的各个阶段。

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