In this paper methodological investigations regarding an innovative Multidisciplinary Design and Optimization (MDO) approach for conceptual aircraft design are presented. These research activities are part of the ongoing EU-funded research project AGILE. The next generation of aircraft MDO processes is developed in AGILE, which targets significant reductions in aircraft development cost and time to market, leading to cheaper and greener aircraft solutions. The paper introduces the AGILE project structure and recalls the achievements of the first year of activities where a reference distributed MDO system has been formulated, deployed and applied to the design and optimization of a reference conventional aircraft configuration. Then, investi...
The research and innovation EU funded AGILE project has developed the next generation of aircraft Mu...
AGILE targets multidisciplinary optimization using distributed analysis frameworks. The involvement ...
The ever-increasing complexity of systems under development in aerospace is demanding to streamline ...
In this paper methodological investigations regarding an innovative Multidisciplinary Design and Opt...
In this paper methodological investigations regarding an innovative Multidisciplinary De- sign and ...
This paper presents methodological investigations performed in research activities in the field of M...
This paper presents methodological investigations performed in research activities in the field of M...
This paper presents methodological investigations performed in research activities in the field of M...
This paper presents methodological investigations performed in research activities in the field of M...
This paper presents methodological investigations performed in research activities in the field of M...
The EU funded AGILE project is developing the next generation of aircraft Multidisciplinary Design a...
This paper presents a critical discussion on the automated problem formulation and workflow creation...
This paper presents a critical discussion on the automated problem formulation and workflow creation...
AGILE targets multidisciplinary optimization using distributed analysis frameworks. The involvement ...
The need to continuously design better aircraft is challenging on multiple fronts: the existing tube...
The research and innovation EU funded AGILE project has developed the next generation of aircraft Mu...
AGILE targets multidisciplinary optimization using distributed analysis frameworks. The involvement ...
The ever-increasing complexity of systems under development in aerospace is demanding to streamline ...
In this paper methodological investigations regarding an innovative Multidisciplinary Design and Opt...
In this paper methodological investigations regarding an innovative Multidisciplinary De- sign and ...
This paper presents methodological investigations performed in research activities in the field of M...
This paper presents methodological investigations performed in research activities in the field of M...
This paper presents methodological investigations performed in research activities in the field of M...
This paper presents methodological investigations performed in research activities in the field of M...
This paper presents methodological investigations performed in research activities in the field of M...
The EU funded AGILE project is developing the next generation of aircraft Multidisciplinary Design a...
This paper presents a critical discussion on the automated problem formulation and workflow creation...
This paper presents a critical discussion on the automated problem formulation and workflow creation...
AGILE targets multidisciplinary optimization using distributed analysis frameworks. The involvement ...
The need to continuously design better aircraft is challenging on multiple fronts: the existing tube...
The research and innovation EU funded AGILE project has developed the next generation of aircraft Mu...
AGILE targets multidisciplinary optimization using distributed analysis frameworks. The involvement ...
The ever-increasing complexity of systems under development in aerospace is demanding to streamline ...