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Aircraft Hybrid-Electric Propulsion: Development Trends, Challenges and Opportunities
The present work is a survey on aircraft hybrid electric propulsion (HEP) that aims to present state-of-the-art technologies and future tendencies in the following areas: air transport market, hybrid demonstrators, HEP topologies applications, aircraft design, electrical systems for aircraft, energy...
Autores principales: | , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Springer US
2021
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8207818/ http://dx.doi.org/10.1007/s40313-021-00740-x |
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author | Rendón, Manuel A. Sánchez R., Carlos D. Gallo M., Josselyn Anzai, Alexandre H. |
author_facet | Rendón, Manuel A. Sánchez R., Carlos D. Gallo M., Josselyn Anzai, Alexandre H. |
author_sort | Rendón, Manuel A. |
collection | PubMed |
description | The present work is a survey on aircraft hybrid electric propulsion (HEP) that aims to present state-of-the-art technologies and future tendencies in the following areas: air transport market, hybrid demonstrators, HEP topologies applications, aircraft design, electrical systems for aircraft, energy storage, aircraft internal combustion engines, and management and control strategies. Several changes on aircraft propulsion will occur in the next 30 years, following the aircraft market demand and environmental regulations. Two commercial areas are in evolution, electrical urban air mobility (UAM) and hybrid-electric regional aircraft. The first one is expected to come into service in the next 10 years with small devices. The last one will gradually come into service, starting with small aircraft according to developments in energy storage, fuel cells, aircraft design and hybrid architectures integration. All-electric architecture seems to be more adapted to UAM. Turbo-electric hybrid architecture combined with distributed propulsion and boundary layer ingestion seems to have more success for regional aircraft, attaining environmental goals for 2030 and 2050. Computational models supported by powerful simulation tools will be a key to support research and aircraft HEP design in the coming years. Brazilian research in these challenging areas is in the beginning, and a multidisciplinary collaboration will be critical for success in the next few years. |
format | Online Article Text |
id | pubmed-8207818 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2021 |
publisher | Springer US |
record_format | MEDLINE/PubMed |
spelling | pubmed-82078182021-06-17 Aircraft Hybrid-Electric Propulsion: Development Trends, Challenges and Opportunities Rendón, Manuel A. Sánchez R., Carlos D. Gallo M., Josselyn Anzai, Alexandre H. J Control Autom Electr Syst Article The present work is a survey on aircraft hybrid electric propulsion (HEP) that aims to present state-of-the-art technologies and future tendencies in the following areas: air transport market, hybrid demonstrators, HEP topologies applications, aircraft design, electrical systems for aircraft, energy storage, aircraft internal combustion engines, and management and control strategies. Several changes on aircraft propulsion will occur in the next 30 years, following the aircraft market demand and environmental regulations. Two commercial areas are in evolution, electrical urban air mobility (UAM) and hybrid-electric regional aircraft. The first one is expected to come into service in the next 10 years with small devices. The last one will gradually come into service, starting with small aircraft according to developments in energy storage, fuel cells, aircraft design and hybrid architectures integration. All-electric architecture seems to be more adapted to UAM. Turbo-electric hybrid architecture combined with distributed propulsion and boundary layer ingestion seems to have more success for regional aircraft, attaining environmental goals for 2030 and 2050. Computational models supported by powerful simulation tools will be a key to support research and aircraft HEP design in the coming years. Brazilian research in these challenging areas is in the beginning, and a multidisciplinary collaboration will be critical for success in the next few years. Springer US 2021-06-16 2021 /pmc/articles/PMC8207818/ http://dx.doi.org/10.1007/s40313-021-00740-x Text en © Brazilian Society for Automatics--SBA 2021 This article is made available via the PMC Open Access Subset for unrestricted research re-use and secondary analysis in any form or by any means with acknowledgement of the original source. These permissions are granted for the duration of the World Health Organization (WHO) declaration of COVID-19 as a global pandemic. |
spellingShingle | Article Rendón, Manuel A. Sánchez R., Carlos D. Gallo M., Josselyn Anzai, Alexandre H. Aircraft Hybrid-Electric Propulsion: Development Trends, Challenges and Opportunities |
title | Aircraft Hybrid-Electric Propulsion: Development Trends, Challenges and Opportunities |
title_full | Aircraft Hybrid-Electric Propulsion: Development Trends, Challenges and Opportunities |
title_fullStr | Aircraft Hybrid-Electric Propulsion: Development Trends, Challenges and Opportunities |
title_full_unstemmed | Aircraft Hybrid-Electric Propulsion: Development Trends, Challenges and Opportunities |
title_short | Aircraft Hybrid-Electric Propulsion: Development Trends, Challenges and Opportunities |
title_sort | aircraft hybrid-electric propulsion: development trends, challenges and opportunities |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8207818/ http://dx.doi.org/10.1007/s40313-021-00740-x |
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