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April 5, 2026Automation and Remote Control0 citations

Performance Enhancement of Fuel Cell towards Sustainable Transport Using Optimized MPPT

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APA. PreethiRAR. Arulmozhiyal

Key Points

  • The research aims to enhance fuel cell efficiency in electric vehicles by developing a modified MPPT controller.
  • Proposed a modified long short-term memory (MLSTM) controller for MPPT
  • Utilized predictive learning for accurate power point estimation
  • Implemented adaptive control signals for the DC–DC converter
  • Conducted simulations to evaluate performance
  • Achieved a tracking time of 0.57 seconds
  • Obtained a total harmonic distortion (THD) of 9.66%
  • Reached an efficiency of 99.25%
  • Demonstrated improved energy efficiency compared to conventional P&O methods

Abstract

Fuel cells are emerging as a clean and efficient power source for electric vehicles (EV). But, due to their nonlinear characteristic nature, they are failed to maintain maximum efficiency. Standard MPPT algorithms often converge slowly and fluctuate around the maximum power point, which lowers overall energy use. To address these problems, this study proposes a modified long short-term memory (MLSTM) based controller for maximum power point tracking. This method uses predictive learning to estimate the maximum power point accurately and create adaptive control signals for the DC–DC converter. This ensures stable fuel cell operation and effective power delivery to the traction system. Simulation results demonstrate that the proposed approach achieved a tracking time of 0.57 s, THD of 9.66%, and efficiency of 99.25%, outperforming the conventional P&O method. The proposed controller not only improves the overall energy efficiency of the fuel cell system but also extends the driving range of the EV with renewable energy sources in hybrid vehicle architectures. This topology provides a promising solution to fuel cell based EV in terms of enhanced sustainability and efficiency.

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Cite This Study

Preethi et al. (2025) studied this question.

synapsesocial.com/papers/69d1fd13a79560c99a0a2e56https://doi.org/10.1134/s0005117925600892
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