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首页> 外文期刊>CEAS Aeronautical Journal >Generating potential actuation architectures for multifunctional flight control surfaces using a Design Structure Matrix clustering algorithm
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Generating potential actuation architectures for multifunctional flight control surfaces using a Design Structure Matrix clustering algorithm

机译:使用设计结构矩阵聚类算法为多功能飞行控制表面产生潜在的致动架构

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摘要

Driven by the need for more ecofriendly air transport impact on the environment, the evolution of flight control systems is tailored towards the design of multifunctional systems (e.g., the flaps, which are typically used for providing high lift, could additionally be used for roll control, or for span-wise lift distribution to reduce wing loads). The subsystems which actuate the control surfaces are very complex, composed of hundreds of components working together. Designing new concepts to accommodate the multifunctional flight control requirements is a complex and demanding task. Using Design Structure Matrix methods for generating alternative system architectures is a promising way for extensively exploring the solution space, not restricted to the boundaries of limited modifications of existing solutions. Thus, this paper demonstrates the possibility of using a hierarchical stochastic Design Structure Matrix clustering method, together with a multifunctional requirement, to generate alternative actuation system architectures. It is shown that, with this approach, near-optimal architectures based on multifunctional requirements can be generated and alternatives can be evaluated for system-level impact. In this study, different architectures are created, and the top 3 analyzed based on their success in achieving the multifunctional requirement. This study demonstrates the possibility of generating alternative actuation system concepts optimized for multifunctional requirements, not limited to small local improvements of existing architectures.
机译:通过对环境的更多Ecofriendly空中运输的需求驱动,飞行控制系统的演变朝向多功能系统的设计(例如,通常用于提供高升力的翼片,也可以用于滚动控制或者用于减少翼载的跨度明智的提升分布)。致动控制表面的子系统非常复杂,由数百个组件组成。设计新概念以适应多功能飞行控制要求是一个复杂和苛刻的任务。使用设计结构矩阵生成替代系统架构是广泛探索解决方案的有希望的方式,不限于现有解决方案的有限修改的界限。因此,本文展示了使用分层随机设计结构矩阵聚类方法以及多功能要求的可能性,以产生替代致动系统架构。结果表明,通过这种方法,可以生成基于多功能要求的近最优架构,可以评估替代品以进行系统级冲击。在这项研究中,创建了不同的架构,基于实现多功能要求的成功来分析前3个。本研究展示了为多功能要求进行优化的替代致动系统概念的可能性,不限于现有架构的小局部改进。

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