Structured Expert Judgment Elicitation in Conceptual Aircraft Design

Author:

Todorov Vladislav T.1,Rakov Dmitry2ORCID,Bardenhagen Andreas1ORCID

Affiliation:

1. Aircraft Design and Aerostructures, Institute of Aeronautics and Astronautics, Technische Universität Berlin, 10587 Berlin, Germany

2. Blagonravov Mechanical Engineering Research Institute (IMASH), Russian Academy of Sciences, 101990 Moscow, Russia

Abstract

Disruptive technologies and novel aircraft generations represent a potential approach to address the ambitious emission reduction goals in aviation. However, the introduction of innovative concepts is a time-consuming process, which might not necessarily yield an optimal design for a given flight mission and within the defined time frame. In order to address the need for a structured and more exhaustive search for novel concept generations, the Advanced Morphological Approach (AMA) and its further enhancement was introduced earlier. It implies the decomposition of design problems into functional attributes and appropriate technological alternatives. Subsequently, these are evaluated and combined into solutions, which are then projected onto a solution space. The current paper focuses on the technology evaluation step by deriving and integrating structured expert judgment elicitation (SEJE) techniques into conceptual aircraft design with the AMA. For this purpose, the first aim of the work is to justify the developed method by giving an overview and discussing the most prominent SEJE methods and their applications in aerospace. Then, the derived SEJE concept is described and applied in the form of an expert workshop on the use case of wing morphing architecture. As a result, a solution space of wing morphing architecture configurations is generated and analyzed. The workshop conduction and the expert feedback serve as valuable findings for both the further AMA enhancement and similar research.

Funder

Deutsche Forschungsgemeinschaft

Publisher

MDPI AG

Subject

Aerospace Engineering

Reference54 articles.

1. Bernstein, J.I. (1998). Design Methods in the Aerospace Industry: Looking for Evidence of Set-Based Practices. [Master’s Thesis, Massachusetts Institute of Technology].

2. Creation of innovative concepts in Aerospace based on the Morphological Approach;Todorov;IOP Conf. Ser. Mater. Sci. Eng.,2022

3. Bardenhagen, A., and Rakov, D. (2019). Analysis and Synthesis of Aircraft Configurations during Conceptual Design Using an Advanced Morphological Approach, Deutsche Gesellschaft für Luft- und Raumfahrt—Lilienthal-Oberth e.V.

4. Todorov, V.T., Rakov, D., and Bardenhagen, A. (2022). Enhancement Opportunities for Conceptual Design in Aerospace Based on the Advanced Morphological Approach. Aerospace, 9.

5. Zwicky, F. (1969). Discovery, Invention, Research—Through the Morphological Approach, The Macmillan Company.

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