Theoretical and Natural Science

- The Open Access Proceedings Series for Conferences


Theoretical and Natural Science

Vol. 5, 25 May 2023


Open Access | Article

Electric and hybrid-electric aircraft propulsion systems: development, difficulties and opportunities

Zirui Huang * 1
1 University of Leeds, Department of Electrical and Electronic Engineering, Leeds, UK, LS2 8DS

* Author to whom correspondence should be addressed.

Theoretical and Natural Science, Vol. 5, 28-34
Published 25 May 2023. © 2023 The Author(s). Published by EWA Publishing
This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
Citation Zirui Huang. Electric and hybrid-electric aircraft propulsion systems: development, difficulties and opportunities. TNS (2023) Vol. 5: 28-34. DOI: 10.54254/2753-8818/5/20230263.

Abstract

As the world has grown rapidly over the past century, so has the aviation industry as a whole. This has led to a huge volume of aviation market and at the same time the aviation market excessive reliance on fuel, with a consequent huge environmental impact. As a global community, we are moving towards an electrified transport architecture. And some studies of aircraft propulsion systems have shown that electric and hybrid electric propulsion systems offer significant benefits over conventional fuel propulsion systems. However, there are also some researches have shown that while some electrified propulsion strategies can result in significant reductions in CO2 emissions, the overall cost of the aircraft can also increase significantly. The economic efforts made in terms of purely electric and hybrid propulsion have not been significant, so this technology is not yet in significant use in the aviation market. This paper considers some of these systems and analyses their structural advantages, technical requirements, etc. This is followed by a discussion of the current difficulties and future trends in the application of purely electric and hybrid propulsion systems. It is also significant to convey that the current immaturity of this technology and the areas for improvement.

Keywords

all electric, hybrid electric, propulsion system, clean energy, aviation market, emission target.

References

1. Hannah Ritchie, Climate change and flying: what share of global CO2 emissions come from aviation, by our world in data, October 22, 2020. https://ourworldindata.org/co2-emissions-from-aviation.

2. Lee D. S. & Fahey D. W. & Skowron A. et al. The contribution of global aviation to anthropogenic climate forcing for 2000 to 2018 [J] Atmospheric Environment, Vol. 244, 117843, 2021, pp. 1-28.

3. Wheeler P., Sirimanna T. S., Bozhko S. & Haran K.S., Electric/Hybrid-Electric Aircraft Propulsion Systems [J] IEEE, vol. 109, no. 6, 2021, pp. 1115-1127.

4. Guo Y., Zhu L., Wang X., Qiu X., Qian W., Wang L., Assessing environmental impact of NOX and SO2 emissions in textiles production with chemical footprint, Science of The Total Environment, Vol. 831, 154961, 2022.

5. Kellermann H., Fuhrmann S., Shamiyeh M., Hornung M., Design of a Battery Cooling System for Hybrid Electric Aircraft, American Institute of Aeronautics and Astronautics, May 2, 2022.

6. Xie Y., Savvarisal A., Tsourdos A., Zhang D., Gu J., Review of hybrid electric powered aircraft, its conceptual design and energy management methodologies, Chinese Journal of Aeronautics, Vol. 34, no. 4, 2021, pp.432-450.

7. Riboldi C.E.D, Gualdoni F., An integrated approach to the preliminary weight sizing of small electric aircraft, Aerospace Science and Technology, Vol. 58, 2016, pp.134-149.

8. IATA, Aircraft Technology Roadmap to 2050, https://www.iata.org/contentassets/8d19e716636a47c184e7221c77563c93/Technology-roadmap-2050.pdf.

9. Bowman C. L. & Felder J. L. & Marien T.V, Turbo- and Hybrid-Electrified Aircraft Propulsion Concepts for Commercial Transport, 2018 AIAA/IEEE Electric Aircraft Technologies Symposium (EATS), 2018, pp. 1-8.

10. Rendón, M. A. & Sánchez R.C.D., Gallo M. J. Anzai A. H. Aircraft Hybrid-Electric Propulsion: Development Trends, Challenges and Opportunities. J Control Autom Electr Syst 32, 1244–1268, 2021.

11. Donateo T., Ficarella A. & Spedicato L, A method to analyze and optimize hybrid electric architecture applied to unmanned aerial vehicles, June 19, 2018.

Data Availability

The datasets used and/or analyzed during the current study will be available from the authors upon reasonable request.

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Volume Title
Proceedings of the 2nd International Conference on Computing Innovation and Applied Physics (CONF-CIAP 2023)
ISBN (Print)
978-1-915371-53-9
ISBN (Online)
978-1-915371-54-6
Published Date
25 May 2023
Series
Theoretical and Natural Science
ISSN (Print)
2753-8818
ISSN (Online)
2753-8826
DOI
10.54254/2753-8818/5/20230263
Copyright
25 May 2023
Open Access
This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited

Copyright © 2023 EWA Publishing. Unless Otherwise Stated