A Framework for Aircraft Conceptual Design and Multidisciplinary Optimization

Saeed Hosseini, Mohammad Ali Vaziry-Zanjany, H. Ovesy
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Abstract

In this research, the architecture and the functionalities of the LAMBDA (Laboratory of Aircraft Multidisciplinary Knowledge-Based Design and Analysis) framework for the design, analysis, and optimization of civil aircraft are presented. The framework is developed in MATLAB R2022a and comprises a modular architecture, which gives the potential for the use of different methods and fidelities for each discipline. The methods can be selected from a set of built-in methods or custom user-defined scripts. Disciplinary modules of the LAMBDA (Laboratory of Aircraft Multidisciplinary Knowledge-Based Design and Analysis) are Requirements, Weight, Sizing, Geometry, Aerodynamics, Engine, Performance, Cost, Emission, and Optimization. This framework has been used for different types of design and optimization problems. When it is applied for the design and optimization of a novel regional TBW (Truss-Braced Wing) aircraft, the operating cost has been reduced by 7.7% in the optimum configuration compared to the base configuration.
飞机概念设计和多学科优化框架
本研究介绍了用于民用飞机设计、分析和优化的 LAMBDA(飞机多学科知识设计与分析实验室)框架的结构和功能。该框架是在 MATLAB R2022a 中开发的,包括一个模块化架构,可以针对每个学科使用不同的方法和保真度。这些方法可以从一套内置方法或用户自定义脚本中选择。LAMBDA (飞机多学科知识设计与分析实验室)的学科模块包括需求、重量、尺寸、几何、空气动力学、发动机、性能、成本、排放和优化。这一框架已被用于不同类型的设计和优化问题。在应用该框架设计和优化新型支线 TBW(桁架式机翼)飞机时,与基本配置相比,最佳配置的运营成本降低了 7.7%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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