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Using Aircraft Requirements as Variables: An Integrated Optimization Approach for Air Transportation Systems

机译:使用飞机需求作为变量:航空运输系统的集成优化方法

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Recent international goals for the future development of aviation emphasize the improvement of performance metrics of air transportation systems. Since traditional design processes typically target only individual system elements, like aircraft or air transportation networks, it appears desirable to integrate these different efforts into a single optimization approach. High- fidelity design tools for individual systems are computationally expensive. However, conceptual design methods are typically relatively time efficient. Therefore, this paper introduces an optimization approach that combines conceptual aircraft and network design. The approach couples both tasks by those aircraft requirements that are also relevant for network design, such as aircraft range and capacity. The idea is to provide a subsequent, more detailed aircraft design process with requirement values that appear promising to improve an entire air transportation system. This investigation is exploratory because it focusses on introducing the problem rather than deriving any real world design attributes. The aircraft design part uses the DLR code VAMPZero. Like other conceptual aircraft design tools, it is fast and provides acceptable results for conventional air vehicle configurations. A two-stage network design and passenger allocation model optimizes a reduced scale real world air transportation network. As an illustrative example, the implemented approach solves an illustrative but simplistic intra-European air travel optimization problem.
机译:航空业未来发展的最新国际目标强调了航空运输系统性能指标的改进。由于传统的设计过程通常只针对单个系统元素,例如飞机或航空运输网络,因此似乎需要将这些不同的努力整合到单个优化方法中。用于单个系统的高保真设计工具在计算上是昂贵的。但是,概念设计方法通常相对省时。因此,本文介绍了一种结合概念飞机和网络设计的优化方法。该方法将那些任务与那些与网络设计也相关的飞机需求相结合,例如飞机的范围和容量。这个想法是提供一个后续的,更详细的飞机设计过程,其要求值似乎有望改善整个航空运输系统。这项研究是探索性的,因为它专注于介绍问题,而不是推导任何现实世界的设计属性。飞机设计部分使用DLR代码VAMPZero。像其他概念飞机设计工具一样,它速度很快,并且为常规的航空器配置提供了可接受的结果。两阶段的网络设计和乘客分配模型优化了缩小规模的现实世界中的航空运输网络。作为说明性示例,所实施的方法解决了说明性但简单的欧洲内部航空旅行优化问题。

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