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A strategy for resolving evolutionary performance coupling at the early stages of complex engineering design

机译:解决复杂工程设计早期阶段性能进化耦合的策略

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摘要

In the performance-driven complex engineering design process, at an early design stage, some required design parameters or equations cannot be determined precisely, which can have significant impact on the chain of design decisions and have to be validated with the outcome of design results from the later stages requiring redesign effort to resolve inconsistencies. So it is imminent to evaluate the extent of, and systematically manage, the couplings of design models and develops an appropriate resolving strategy in order to obtain more accurate design results in the shortest time period. This paper presents the research work carried out via the analyses of performance evolution and potential performance coupling at the early stage of complex engineering design. Four strategies based on performance model transformation for resolving evolutionary performance coupling are studied (i.e. decoupling, coupling, first-decoupling-then-coupling and first-coupling-then-decoupling). A selection method for resolving performance coupling based on the synthetic analysis of sensitivity of uncertainty propagation, solvability of coupled models, coupling strength and performance interface and availability of design information is proposed. To demonstrate the related concepts and method, the solving process of a complex design problem related to a suspension system design for tracked vehicle is given.
机译:在以性能为导向的复杂工程设计过程中,在设计的早期阶段,无法精确确定某些所需的设计参数或方程式,这可能会对设计决策链产生重大影响,并且必须通过以下方面的设计结果进行验证:后期需要重新设计才能解决不一致问题。因此,迫切需要评估设计模型的耦合程度并对其进行系统化管理,并制定适当的解决方案,以便在最短的时间内获得更准确的设计结果。本文介绍了通过在复杂工程设计的早期阶段对性能演变和潜在性能耦合进行分析而进行的研究工作。研究了基于性能模型变换的四种解决进化性能耦合的策略(即解耦,耦合,先解耦后耦合和先耦合后解耦)。提出了一种基于不确定性传播的灵敏度,耦合模型的可解性,耦合强度和性能接口以及设计信息的可用性的综合分析的性能耦合选择方法。为了说明相关概念和方法,给出了与履带车辆悬架系统设计有关的复杂设计问题的解决过程。

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