4.6 Article

Development of Fuzzy-Adaptive Control Based Energy Management Strategy for PEM Fuel Cell Hybrid Tramway System

期刊

APPLIED SCIENCES-BASEL
卷 12, 期 8, 页码 -

出版社

MDPI
DOI: 10.3390/app12083880

关键词

PEM fuel cell; hybrid tramway system; fuzzy logic control; energy management strategy; adaptive control

资金

  1. Hydrogen Electric Tram Demonstration Project through the Ministry of Trade, Industry Energy (MOTIE)
  2. Korea Institute for Advancement of Technology (KIAT)
  3. Regional Innovation Strategy (RIS) through the National Research Foundation of Korea (NRF) - Ministry of Education (MOE) [2021RIS-003]
  4. Korea Evaluation Institute of Industrial Technology (KEIT) [P0018648] Funding Source: Korea Institute of Science & Technology Information (KISTI), National Science & Technology Information Service (NTIS)

向作者/读者索取更多资源

This paper introduces a comprehensive energy management strategy (EMS) to achieve appropriate power distribution and stabilize the operating voltage of hybrid tramways. The high-level control uses fuzzy logic and adaptive control loop to determine the reference power for different working conditions, while the low-level control generates PWM signals for DC/DC converters to regulate output performance and ensure stable DC bus voltage. Simulation results confirm that the proposed EMS effectively ensures power distribution, improves PEMFC efficiency, and stabilizes DC bus voltage.
Currently, the implementation of hybrid proton-exchange membrane fuel cell (PEMFC)-battery-supercapacitor systems for hybrid tramways to replace conventional internal combustion engines and reduce greenhouse gas emissions has triggered an upward trend in developing energy management strategies (EMSs) to effectively deploy this integration. For this purpose, this paper introduces a comprehensive EMS consisting of high-level and low-level controls to achieve appropriate power distribution and stabilize the operating voltage of the powertrain. In the high-level control, a fuzzy logic technique and adaptive control loop are proposed to determine the reference power for energy sources under different working conditions. Meanwhile, the low-level control aims to generate a pulse-width-modulation (PWM) signal for DC/DC converter, associated with each electric source, to regulate the device's output performance and guarantee the DC bus voltage. Comparisons between the proposed strategy with available approaches are conducted to verify the effectiveness of the proposed EMS through MATLAB/Simulink environment. The simulation results confirm that the proposed EMS not only sufficiently ensures powers distribution even when the abrupt changes of load or high peak power, but also enhance the efficiency of the PEMFC, in which the PEMFC stack efficiency can be exhibited up to 53% with hydrogen consumption less than 21.4%. Moreover, the DC bus voltage can be regulated with a small ripple of around 1%.

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