PSI - Issue 54
Wojciech Skarka et al. / Procedia Structural Integrity 54 (2024) 506–513 Structural Integrity Procedia 00 (2019) 000 – 000
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In the next steps of the drone's development, it is planned to use the Model-Based Desing methodology to systematically analyze and develop the drone structure, with particular attention to increasing performance by improving energy efficiency [9]. Particular attention will also be paid to aerodynamic analyses and the assessment of the impact of individual design details on aeronautical properties [10].
Fig. 10 Design after optimization.
5. Conclusions In conclusion, the drone cage takes hits better on the connectors than on the tubes but when the hole cage is assembled deformation would be different, especially in a 3rd case, so it is obligatory to run the analysis on the whole cage. The model of the drone is too stiff, which means that the model should be simplified and the walls should be thinned. It will increase flexibility and decrease the loads. References [1] How to Connect, Flash and Configure BLHeli_S ESCs. Available online – accessed 20.09.2023 https://oscarliang.com/connect-flash-blheli-s-esc/ [2] Manual and technical sheet for the flight controller. Available online – accessed 20.09.2023 http://www.mateksys.com/?portfolio=f405-wmn#tab-id-2 [3] Manual and technical sheet for the second flight controller Available online – accessed 20.09.2023 http://www.mateksys.com/?portfolio=f405-minite [4]Laurie Newman Drones: The Complete Manual: The Essential Handbook for Drone Enthusiasts Imagine Publishing Ltd 2023. [5]Terry Kilby & Belinda Kilby Make: Getting started with Drones. Maker Media San Francisco, CA [6]Reg Austin. Unmanned Aircraft Systems UAVS Design, Development and Deployment. WILEY [7]Andrew J. Keane Andras Sobester James P. Scanlan. Small Unmanned Fixed-wind Aircraft Design. WILEY [8] Patrick Di Justo Make: DIY Drone and Quadcopter Projects, Maker Media San Francisco, CA [9] Skarka, W.: Model-Based Design and Optimization of Electric Vehicles. 25th ISPE Inc International Conference on Transdisciplinary Engineering 2018 | TRANSDISCIPLINARY ENGINEERING METHODS FOR SOCIAL INNOVATION OF INDUSTRY 4.0 7 , pp.566-575 [10] Peciak, M.; Skarka, W. Assessment of the Potential of Electric Propulsion for General Aviation Using Model Based System Engineering (MBSE) Methodology. Aerospace 2022, 9 , 74. https://doi.org/10.3390/aerospace9020074
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