
Academic Journal
Q1IEEE Transactions on Sustainable Energy
About IEEE Transactions on Sustainable Energy
IEEE Transactions on Sustainable Energy is a scholarly journal published by Institute of Electrical and Electronics Engineers Inc.. SCImago 2025 places it in Q1 with an SJR of 4.318 and an H-index of 193.
Its listed coverage is 2010-2026 and its research categories include Renewable Energy, Sustainability and the Environment (Q1). The 2025 dataset reports 347 documents and 7869 citations across the latest three-year reporting window.
IEEE Transactions on Sustainable Energy: Advancing the Future of Renewable Energy and Sustainability
The IEEE Transactions on Sustainable Energy (TSE) is a prestigious, peer-reviewed journal dedicated to advancing research and innovation in sustainable energy technologies. Published by the Institute of Electrical and Electronics Engineers (IEEE), TSE plays a critical role in promoting energy systems that are both efficient and environmentally friendly, supporting the global shift toward renewable energy sources.
Focus Areas and Scope
IEEE TSE covers a wide range of topics related to sustainable energy systems, offering insights into the latest developments in the energy sector. The journal's scope includes, but is not limited to, the following areas:
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Renewable Energy Technologies: Solar, wind, geothermal, hydropower, and bioenergy technologies are explored in depth. Researchers present novel methodologies for improving energy conversion efficiency, storage, and integration of renewable sources into the existing power grid.
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Energy Storage Systems: As renewable energy sources often generate intermittent power, energy storage is a critical aspect of sustainable energy systems. The journal addresses the latest advancements in battery technologies, supercapacitors, and grid-scale storage solutions to enhance reliability and stability in energy distribution.
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Smart Grids and Energy Systems: With the evolution of the energy sector, smart grids play an essential role in efficiently managing energy consumption and distribution. IEEE TSE covers the integration of advanced communication technologies, real-time data analytics, and demand-side management in modernizing the power grid for better sustainability and reliability.
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Energy Efficiency and Demand Response: The journal explores innovations aimed at improving the energy efficiency of buildings, industries, and transportation systems. Demand response strategies, which allow for flexible energy consumption patterns based on supply and demand, are also a key focus.
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Sustainable Energy Policy and Economics: Sustainable energy policies, market dynamics, and the economic aspects of renewable energy adoption are important areas of interest. TSE provides a platform for discussions on governmental regulations, policy frameworks, and market mechanisms that encourage investment in clean energy technologies.
Why IEEE Transactions on Sustainable Energy Matters
In today’s world, where climate change and environmental degradation are critical challenges, there is a growing need for sustainable energy solutions. IEEE Transactions on Sustainable Energy serves as a vital resource for researchers, engineers, policymakers, and industry professionals dedicated to addressing these global energy challenges.
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Cutting-edge Research: The journal features high-quality, peer-reviewed articles that highlight groundbreaking research in the sustainable energy field. This includes innovations in energy systems modeling, advanced control techniques, and new materials for energy applications.
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Global Collaboration: As a leading journal in the energy sector, IEEE TSE fosters collaboration between academia, industry, and government bodies worldwide, offering a platform for sharing knowledge and advancing research to meet global energy needs.
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Environmental Impact: By promoting clean energy technologies and strategies for energy efficiency, IEEE TSE contributes significantly to reducing the carbon footprint and mitigating the effects of climate change.
How to Access IEEE Transactions on Sustainable Energy
IEEE TSE is accessible through the IEEE Xplore digital library, where subscribers can access a vast archive of articles and research papers. Researchers and professionals can stay updated on the latest trends, technological breakthroughs, and emerging topics within sustainable energy by subscribing to the journal.
Journal Metrics
Metrics can change by reporting year. Verify time-sensitive values with the publisher or indexing service.
Aims & Scope
Scope of IEEE Transactions on Sustainable Energy
The IEEE Transactions on Sustainable Energy is a leading scientific journal dedicated to advancing knowledge in the field of sustainable energy technologies. With the growing importance of sustainability and environmental stewardship, this journal serves as a vital resource for researchers, engineers, and professionals committed to addressing the global energy challenges of the future.
This highly esteemed journal focuses on original research, development, and innovative applications of sustainable energy systems. It highlights the integration of renewable energy sources, energy storage solutions, and energy efficiency techniques, contributing to the reduction of carbon footprints and the promotion of sustainable development. It provides a platform for the dissemination of advanced methodologies, cutting-edge technologies, and transformative ideas that can help accelerate the transition to a more sustainable energy future.
Key Topics Covered:
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Renewable Energy Systems: IEEE Transactions on Sustainable Energy explores a wide range of renewable energy technologies, including solar, wind, hydroelectric, and biomass energy systems. The journal highlights the challenges and innovations in harnessing these sources to produce clean, renewable power.
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Energy Storage Technologies: With the growing importance of intermittent renewable energy sources like solar and wind, the journal emphasizes the role of energy storage technologies, including advanced batteries, supercapacitors, and other innovative storage systems that enhance the reliability and stability of power grids.
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Smart Grids and Energy Networks: The journal explores the development of smart grids, which enable more efficient management of energy resources through real-time monitoring, automation, and optimization. It also discusses the integration of decentralized energy systems and the role of microgrids in enhancing grid resilience and reliability.
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Energy Efficiency and Management: An essential component of sustainable energy, energy efficiency is a major focus of the journal. Topics covered include innovations in energy-efficient technologies, building design, and industrial processes, as well as strategies for energy management in urban, industrial, and residential settings.
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Sustainable Power Generation: The journal delves into new methods of sustainable power generation, such as geothermal and ocean energy, alongside traditional renewable sources. It includes research on improving the efficiency, scalability, and cost-effectiveness of power generation systems that minimize environmental impact.
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Policy and Environmental Impacts: Recognizing that technological innovation must be complemented by supportive policies, the journal also discusses the impact of environmental regulations, government policies, and market mechanisms on the adoption of sustainable energy solutions. This area includes topics on energy economics, grid policy, and global efforts to combat climate change.
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Emerging Technologies and Innovations: IEEE Transactions on Sustainable Energy is a hub for emerging technologies, such as artificial intelligence, machine learning, and the Internet of Things (IoT) applied to energy systems. These technologies are revolutionizing the way energy is generated, stored, and distributed, leading to more sustainable and efficient systems.
Recent Research Articles
Latest publications matched automatically by ISSN.
Model-Reference Adaptive Damping: Enhancing the Resilience of Grid-Forming Inverters Under Uncertain Grid Conditions
Ali Hosseinipour, Zhongtian Zhang, Javad Khazaei
2026-07 · DOI: 10.1109/tste.2026.3654431IEEE Transactions on Sustainable Energy Publication Information
2026-07 · DOI: 10.1109/tste.2026.3699263Learning-Accelerated Solution for the Bilinear Optimal Dispatch of Integrated Electricity and Heating Systems
Jiachen Zhang, Haotian Zhao, Qinglai Guo
2026-07 · DOI: 10.1109/tste.2025.3645810Table of Contents
2026-07 · DOI: 10.1109/tste.2026.3699261IEEE Industry Applications Society Information
2026-07 · DOI: 10.1109/tste.2026.3699285An Interpretable Photovoltaic Scenario Generation Method Based on RMT-Enhanced WGAN Considering Physical Constraints
Tianxiao Mo, Jun Liu, Yu Zhao, Jiacheng Liu et al.
2026-07 · DOI: 10.1109/tste.2025.3643688Degradation-Aware Real-Time Power Allocation Approach for Heterogeneous BESS
Jiaxiong Xiang, Ming Zhou, Yi Ren, Chang Li et al.
2026-07 · DOI: 10.1109/tste.2026.3655105Enhancing Offshore Wind Integration by Integrated Electricity and Gas Systems With Hydrogen Blending: The Case of Ireland
Sheng Wang, Khurram Hashmi, Hui Li, Duo Li et al.
2026-07 · DOI: 10.1109/tste.2026.3672990Improved Reachability Analysis for VSC-MTDC Integrated Offshore Wind Farms Based on Adaptive Parameter Optimization
Wen Gao, Kaishun Xiahou, Yang Liu, Zhigang Li et al.
2026-07 · DOI: 10.1109/tste.2026.3665816Decentralized Coordination for Offshore Power Systems and UAV-Empowered Coastal Logistics Networks
Yangfan Luo, Ang Xuan, Yunfei Du, Xinwei Shen et al.
2026-07 · DOI: 10.1109/tste.2026.3656461A Novel Federated Learning Framework With Adaptive Parameter Updater for Wind Power Forecasting
Wang Han, Zhang Ziyun, Yan Jie, Zhang Ning et al.
2026-07 · DOI: 10.1109/tste.2025.3639633A Novel Decoupled LVRT Control Strategy for Post-Fault Voltage Recovery Enhancement of IBRs Considering Voltage-Angle Coupling
Fangyuan Sun, Ruisheng Diao, Ruiyuan Zeng, Jing Zhang et al.
2026-07 · DOI: 10.1109/tste.2025.3644159ANTDCC: A Lightweight and Generalizable Framework for Long-Term Photovoltaic Power Forecasting via Adaptive Normalization and Dynamic Channel Clustering
Quanwei Tan, Jiebei Zhu, Lujie Yu, Qian Xiao et al.
2026-07 · DOI: 10.1109/tste.2026.3661013Model Predictive Control Method for an Integrated Community Energy System Based on a GRU-Driven Dynamic Energy Hub
Yanze Xu, Yunfei Mu, Hongjie Jia, Jiarui Zhang et al.
2026-07 · DOI: 10.1109/tste.2026.3651984Cost Efficient Operation of a Hydrogen Enabled Zero-Carbon Multi-Energy System
Xiaohong Guan, Wangyi Guo, Zhanbo Xu, Jinhui Liu et al.
2026-07 · DOI: 10.1109/tste.2026.3654519Transient Model and Stability Prediction for Multi-Paralleled Grid-Forming Inverters System With Complex Interaction
Cong Luo, Zhiwei Xie, Yandong Chen, Mingkun Gao et al.
2026-07 · DOI: 10.1109/tste.2025.3645060Uniformity Analysis of Frequency Regulation for Grid-Following and Grid-Forming Wind Turbines and Distributed Cooperative Frequency Control for Hybrid Wind Farms
Hongyu Zhou, Yongxin Xiong, Wei Yao, Cheng Wang et al.
2026-07 · DOI: 10.1109/tste.2026.3651604Stability Region Analysis for HVDC-Connected Offshore Wind Farm Participating in Grid Frequency Support
Zhihao Zhang, Yuanhang Zhang, Peng Kou
2026-07 · DOI: 10.1109/tste.2026.3651092Multi-Rate Fast Frequency Regulation With High-Fidelity Neural Network Model of the Electrolyzer Process
S. Gokul Krishnan, Mohd. Asim Aftab, Shehab Ahmed, Charalambos Konstantinou et al.
2026-07 · DOI: 10.1109/tste.2026.3660152A Heterogeneous Graph Spatiotemporal Model for Distributed PV Cluster Forecasting Under Adaptive Partition Collaborative Framework
Nian Liu, Qi Gao, Jiaqi Shi, Shuqing Hao et al.
2026-07 · DOI: 10.1109/tste.2026.3657437Reviews
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April 22, 2025 at 8:34 am
April 22, 2025