Small Magnus Wind Turbine: Modeling Approaches

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Abstract

Renewables have passed the peak of the inflated expectation hype cycle for emerging tech-nologies, but interest in the design of new energy conversion devices is still high due to widespread distributed energy systems for private households. Magnus effect-based wind turbine combines mechanical and electronic engineering that provides a broader wind speed range and potential maximum power point tracking for deeper grid integration. This paper provides a comparative analysis of Magnus effect-based wind turbine simulation models and the development of the numerical model for the maximum power point tracking algorithm. The advanced model contributes to the reduction of the number of actual tests required for the mechatronics system tuning and deals with sustainability-related challenges, such as climate change and the development of new renewable sources of energy.

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Lukin, A., Demidova, G., Rassõlkin, A., Lukichev, D., Vaimann, T., & Anuchin, A. (2022). Small Magnus Wind Turbine: Modeling Approaches. Applied Sciences (Switzerland), 12(4). https://doi.org/10.3390/app12041884

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