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Electric Propulsion Architecture Assessment via Signomial Programming

机译:通过标志性规划的电推进架构评估

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This paper presents the application of signomial programming to the assessment and multi-disciplinary optimization of electric propulsion systems. Analytic models for electrical and mechanical propulsion system components are developed that are compatible with the signo-mial programming objective and constraint forms. These models capture the dependence of mass and efficiency on material properties and operating conditions. Standalone optimization of the electrical cable and motor model illustrates a trade-off between mass and efficiency at the component level. These component models are subsequently integrated into various propulsion architectures and are optimized while taking into account the component dependencies (e.g., fan and motor shaft speed). Specifically, turbofan, turboelectric and geared turboelectric propulsion architectures are optimized on the metrics of fuel consumption and propulsion system mass. The results show that the optimal component masses and efficiencies depend on the propulsion architecture, operating point, and performance metric under consideration, and that signomial programming is useful for determining them.
机译:本文介绍了签字规划对电动推进系统的评估和多学科优化的应用。开发了电气和机械推进系统组件的分析模型,其与标志 - MIAL编程目标和约束形式兼容。这些模型捕获了质量和效率对材料特性和操作条件的依赖性。电缆和电动机模型的独立优化说明了组件水平的质量和效率之间的折衷。随后将这些组件模型集成到各种推进架构中,并在考虑到组件依赖性(例如,风扇和电机轴速度)的同时优化。具体而言,涡轮机,涡轮电压和齿轮涡轮电压推进架构在燃料消耗和推进系统质量的指标上进行了优化。结果表明,最佳分量群体​​和效率取决于正在考虑的推进架构,操作点和性能度量,并且签名编程对于确定它们是有用的。

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