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Design Catalogs: A Systematic Approach to Design and Value Flexibility in Engineering Systems

机译:设计目录:工程系统设计和价值灵活性的系统方法

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摘要

This paper proposes design catalogs as an efficient systematic process for identifying and evaluating improved designs in engineering systems by exploiting ideas of flexibility. Standard design and evaluation approaches typically do not cope well with a range of possible operating conditions. They often simplify considerations of uncertainty, which may lead to designs that do not perform as well as those responding dynamically to changing conditions. The proposed process addresses the complexity of the design problem under uncertainty, recognizing that it is impossible to analyze all possible combinations of evolutions, and the flexible ways in which the system could adapt over time. The process creates a small subset of designs that collectively perform well over a range of scenarios. It bundles representative scenarios and their flexible responses to enable a more thorough analysis that accounts explicitly for uncertainty—and enable considerations of improved designs. Each element consists of combinations of design variables, parameters, and management decision rules carefully selected, and referred as operating plans. In the example analysis, the process improves economic performance by 37% as compared to standard methods in an infrastructure system case study, while exploring only 3% of the design space. It reaches 86% of the stochastically optimal solution while being 183 times faster computationally in the example numerical study. The systematic property aims for practical applications in industry. In each phase, it gives the freedom to rely on the designer's expertise with the system, or to consider analytical tools already in use at the design organization.
机译:本文提出了设计目录,这是通过利用灵活性的思想来识别和评估工程系统中改进设计的有效系统过程。标准设计和评估方法通常无法很好地应对一系列可能的工作条件。它们通常简化了不确定性的考虑,这可能导致设计的性能不如动态响应变化的条件的设计好。所提出的过程解决了不确定性下设计问题的复杂性,认识到不可能分析所有可能的演化组合以及系统随时间适应的灵活方式。该过程将创建一小部分设计,这些设计在各种情况下共同表现良好。它捆绑了代表性的方案及其灵活的响应,以进行更彻底的分析,明确地说明不确定性,并考虑改进设计。每个元素都包含精心选择的设计变量,参数和管理决策规则的组合,并称为操作计划。在示例分析中,与基础结构系统案例研究中的标准方法相比,该过程将经济性能提高了37%,而仅探索了3%的设计空间。在示例数值研究中,它达到了随机最优解的86%,而计算速度提高了183倍。系统特性旨在在工业中实际应用。在每个阶段,都可以自由地依靠设计师在系统上的专业知识,或考虑设计组织已经使用的分析工具。

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