Special Issues

Advances in Clean Energy Technologies for a Sustainable Future

Submission Deadline: 01 June 2026 (closed) View: 1110 Submit to Special Issue

Guest Editor(s)

Prof. Said Dlimi

Email: dlimi.s@ucd.ac.ma

Affiliation: Department of physics, Faculty of Sciences, Chouaib Doukkali University, El Jadida, 24000, Morocco

Homepage:

Research Interests: renewable energy systems, smart energy systems, energy efficiency, environmental impact and sustainability, advanced materials for energy, electrical engineering

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Dr. Oumaima Mesbahi

Email: omesbahi@uevora.pt

Affiliation: Department of Mechatronics Engineering, University of Évora, Évora, 7002-554, Portugal

Homepage:

Research Interests: instrumentation, renewable energies, photovoltaic panels, smart grid, optimization, measurements

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Summary

The transition towards clean energy technologies is essential for achieving global sustainability goals and reducing our dependence on fossil fuels. This special issue aims to highlight the latest advancements in clean energy generation, storage, and utilization, focusing on innovative solutions that enhance efficiency, reliability, and environmental sustainability.


This special issue welcomes original research papers, review articles, and case studies that provide new insights into the development and application of clean energy technologies.


Topics of interest include, but are not limited to:
· Renewable Energy Systems: Solar, wind, hydro, geothermal, and bioenergy innovations.
· Photovoltaic and Photothermal Technologies: Design, optimization, and hybrid PV-T systems.
· Energy Storage Solutions: Batteries, supercapacitors, hydrogen storage, and thermal energy storage.
· Smart Grid & Energy Management: AI-driven optimization, demand-side management, and grid integration.
· Exergy and Efficiency Analysis: Thermodynamic assessments of clean energy systems.
· Sustainable Energy Policies & Economics: Regulatory frameworks, market trends, and investment strategies.


Keywords

clean energy technologies, renewable energy systems, energy storage, smart grids, AI in energy systems, energy management, energy efficiency, sustainable energy, green technologies, low-carbon technologies

Published Papers


  • Open Access

    ARTICLE

    Modelling and Simulation of Partial Shading Impacts on Grid-Tied Photovoltaic Chains

    Hamza Kamel, Fatima Id Ouissaaden, Yassine Essakali, Fahd Elmourabit, Oumaima Mesbahi, Said Dlimi
    Energy Engineering, DOI:10.32604/ee.2026.085033
    (This article belongs to the Special Issue: Advances in Clean Energy Technologies for a Sustainable Future)
    Abstract The increasing deployment of grid-connected photovoltaic (PV) systems has made solar energy one of the most promising renewable energy sources for achieving a sustainable and low-carbon energy future. However, the performance of PV systems is strongly influenced by environmental conditions, particularly partial shading caused by clouds, nearby buildings, trees, or other obstacles. Partial shading can lead to significant power losses, reduced energy yield, and potential degradation of system performance. Therefore, evaluating the behavior of PV systems under such operating conditions is essential for improving their reliability and efficiency. This paper presents an analysis of the… More >

  • Open Access

    ARTICLE

    Distributionally Robust Coordinated Scheduling of Generalized Energy Storage-Integrated Energy Systems Driven by Dynamic Electricity-Hydrogen Pricing Mechanisms

    Changkuan Zhang, Junlong Tang, Qin Yan, Zijian Ye, Yeke Zhang, Xinying Deng
    Energy Engineering, DOI:10.32604/ee.2026.078252
    (This article belongs to the Special Issue: Advances in Clean Energy Technologies for a Sustainable Future)
    Abstract With the rapid growth in the number of new energy vehicles such as battery electric vehicles and hydrogen fuel cell vehicles, the contradiction between surging charging/refueling demand and the limited scheduling capability and low operational efficiency of charging stations is becoming increasingly prominent. To address this issue, this paper proposes a distributionally robust coordinated scheduling method for generalised energy storage (GES)–integrated energy systems (IES) based on electricity–hydrogen dynamic pricing. First, a GES structure incorporating integrated charging stations and integrated demand response is constructed, and the energy interaction and coordination mechanisms between this structure and the More >

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