Design and Reliability Analysis of a Series/Parallel Hybrid System with a Rotary Engine for Safer Ultralight Aviation

Author:

Donateo Teresa1ORCID,Spada Chiodo Ludovica1ORCID

Affiliation:

1. Department of Engineering for Innovation, University of Salento, Via per Monteroni, 73100 Lecce, Italy

Abstract

The conventional powertrain for ultralight aviation consists of a fixed pitch propeller connected to an internal combustion engine (ICE). Since ICEs have a limited thermal efficiency (<40%), new and more efficient powerplant configurations have recently been proposed in the scientific literature by adopting hybrid electric solutions. Hybridization has the additional benefit of increased safety thanks to redundancy. This is a very important issue in ultralight aviation, where a high percentage of accidents are caused by engine failure. In a previous investigation, the authors proposed the design of a series/parallel hybrid electric power system to increase safety and optimize fuel economy by controlling the engine working points during flight. A new powertrain, derived from an automotive Honda i-MMD system, is analyzed in this study and a reliability analysis is performed to underline the improved safety obtained with the proposed system.

Publisher

MDPI AG

Subject

Fluid Flow and Transfer Processes,Computer Science Applications,Process Chemistry and Technology,General Engineering,Instrumentation,General Materials Science

Reference39 articles.

1. De Voogt, A., Chaves, F., Harden, E., Silvestre, M., and Gamboa, P. (2018). Ultralight Accidents in the US, UK, and Portugal. Safety, 4.

2. Donateo, T., and Cavalera, D. (2022). Increasing Safety in Ultralight Aviation with a Wankel-Based Series/Parallel Hybrid Electric Power System. Machines, 10.

3. (2021, October 31). Decreto del Presidente della Repubblica. 9 luglio 2010, n. 133. Available online: https://www.gazzettaufficiale.it/eli/id/2010/08/19/010G0149/sg.

4. (2022, March 31). Decreto Ministeriale. n. 503 del 10/12/2021, Available online: https://www.mit.gov.it/normativa/decreto-ministeriale-numero-503-del-10122021.

5. On parallel hybrid-electric propulsion system for unmanned aerial vehicles;Hung;Prog. Aerosp. Sci.,2021

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