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PREOVIDE as an Approach to Integrated Modeling and Simulation

机译:以集成建模和仿真的方法为预约

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To obtain a system level, integrated perspective on vehicle energy management, the traditional methods for conducting preliminary design, gauging independent requirements, must be abandoned. This method does not capture critical interactions between the various aircraft subsystems. Instead, a more global appreciation for interactions across boundaries needs to be realized with a mosaic scheme, where models are integrated and co-simulated. The advantage of this approach is to enhance the preliminary design stage by predicting integration issues early in the development process. Legacy design practice involved gathering data from multiple vendors in order to produce design iterations. The ability to link models directly is extremely beneficial, as requirements no longer have to be executed independently. This approach reduces cumbersome iterations between model owners and accelerates trade studies. GE Aviation is developing a PREliminary Optimized Vehicle Integration Design Enabler Tool (or PREOVIDE) to facilitate this approach. PREOVIDE is an integrated toolset with a strong emphasis on performance of thermal management systems at the vehicle level. This initiative has led to new and/or improved models for environmental controls systems, air-cycle systems & engine deck integration, vapor cycle systems, fuel tank modeling, cabin thermal modeling, Simulink/NPSS API integration and much more. The paper will outline this modeling philosophy, which demonstrates modeling flexibility, expands the design space, accelerates trade studies, and encourages collaboration in the design of vehicle energy systems.
机译:为了获得系统级,车辆能源管理的集成视角,必须放弃进行初步设计,衡量独立要求的传统方法。该方法不会捕获各种飞机子系统之间的关键相互作用。相反,需要使用镶嵌方案实现跨边界的相互作用的更全面的升值,其中模型集成并共模。这种方法的优点是通过在开发过程的早期预测整合问题来提高初步设计阶段。遗留设计实践涉及从多个供应商收集数据以产生设计迭代。直接链接模型的能力是非常有益的,因为不再需要独立执行要求。这种方法可以减少模型所有者与加速贸易研究之间的繁琐迭代。 GE Aviation正在开发初步优化的车辆集成设计推动器工具(或预先迁移),以促进这种方法。预先迁移是一个集成的工具集,强调了车辆水平的热管理系统的性能。该倡议导致了新的和/或改进的环境控制系统模型,空调系统和发动机甲板集成,蒸气循环系统,燃料罐建模,机舱热建模,Simulink / NPSS API集成等等。本文将概述这种型号哲学,这表明灵活性的建模,扩大了设计空间,加速贸易研究,并鼓励在车辆能源系统的设计中进行合作。

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