Deng / Wen | New Frontiers in Electrical, Electronics and Information Engineering | Buch | 978-981-9240-34-0 | www.sack.de

Buch, Englisch, 524 Seiten, Format (B × H): 155 mm x 235 mm

Reihe: Lecture Notes in Electrical Engineering

Deng / Wen

New Frontiers in Electrical, Electronics and Information Engineering

Conference Proceedings of the 2025 5th International Symposium on Electrical, Electronics and Information Engineering
Erscheinungsjahr 2026
ISBN: 978-981-9240-34-0
Verlag: Springer Verlag, Singapore

Conference Proceedings of the 2025 5th International Symposium on Electrical, Electronics and Information Engineering

Buch, Englisch, 524 Seiten, Format (B × H): 155 mm x 235 mm

Reihe: Lecture Notes in Electrical Engineering

ISBN: 978-981-9240-34-0
Verlag: Springer Verlag, Singapore


Electrical, Electronics, and Information Engineering are fast-evolving fields, driven by continuous innovations and technological advancements. This volume presents groundbreaking insights and contributions shared by researchers, engineers, scholars, and industry professionals during the 2025 5th International Symposium on Electrical, Electronics, and Information Engineering (ISEEIE 2025). The book highlights emerging technologies in areas such as Devices, Components, Controllers, Power Electronics Converters, Electrical Motors and Drives, Wireless Charging and Communications, Sensors, Sensing and Detection, Power Systems and Microgrids, and Automation and Control Engineering. It offers a comprehensive review of cutting-edge research, serving as a valuable resource for those keen to stay abreast of the latest developments in electrical, electronics, and information engineering.

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Weitere Infos & Material


Oscillation Stability Analysis and Optimization Strategy for Energy Storage Inverters.- Power System Frequency Control Parameter Optimization Method Based on Residual Network and Improved Particle Swarm Optimization Algorithm.- Transient Voltage Stability Analysis and Key Influencing Factors of Provincial Power Systems.- Resilient Control for Denial of Service in Cyber Physical System: Asymptotic Stability Lost Case.- Non-Cooperative Game-Based Optimization for Microgrid Scheduling Oriented to Vehicle–Grid Coordination.- Adaptive Secondary Frequency Regulation Strategy for Microgrids Based on Offline Identification and Equivalent Droop Coefficient.- Overview of Resilience Characterization and Enhancement Strategies for Novel Urban Distribution Networks.- Short-Term Load Forecasting for Rural Microgrid Clusters.- Bi-level Optimization for Siting and Sizing of Energy Storage in High-proportion Renewable Energy Grid-connected Systems.- Seasonally Adaptive Dynamic Coordination Scheduling Method for Main-Distribution-Micro Grids.- Impedance Characteristics and Grid-Interaction Stability of GFM Converters with Various Inner-Loop Control Frameworks.- Optimization Strategy for Grid-connected Photovoltaic Energy Storage and Hydrogen Generation System Based on VSG-MPC.- Assessment of Flexibility Resources Need in Power Systems Considering Load Supply Reliability and Renewable Energy Accommodation.- Discrete Pricing Optimization for Dedicated Electric Vehicle Slow-Charging in a Behind-the-Meter Community.- Research on Coordinated Control Strategy of New Energy Collection Stations Based on Synchronous Condensers.- Energy Storage Planning Considering the Investment Economics in Electricity Spot Market.- Adaptive SOH-Aware Frequency Regulation for Energy Storage Systems via Deep Reinforcement Learning.- Research on Capacity Configuration of Photovoltaic Hydrogen Production System based on Parameter Identification and Fitting.- Low Voltage Ride-Through Characteristic Modeling of Distributed Photovoltaic Inverters Based on Measured Data.- Aggregation and Equivalence of Photovoltaic Generations in Low-Voltage Distribution Networks under Voltage Dips.- An IMOLA-Based Holistic Parameter Identification and Cluster-Based Equivalence Approach to DFIG Wind Farms with SVG.- Improved Parameter Identification and Modeling of DFIG Control Systems Considering Wake and Turbulence Effects.- Analytical Calculation for Exciting Capacitance of Self-Excited Induction Generators with Resistive-Inductive Load.- Temperature Prediction Method for Power Equipment in Smart Substations Based on FPA-LSTM.- Infrared Image Segmentation of Power Equipment in Intelligent Substation Based on Improved Deeplab v3+.- Adaptive Compressed Sensing for Early-Stage Thermal Runaway Detection in Batteries via Infrared Imaging.- Improved Hilbert-Huang Transform Method for GIS Mechanical Defect Diagnosis.- Discussion on the Impact of Distributed Capacitance on Insulation Monitoring of AC Low-Voltage Distribution Systems.- Construction of Multi-Network and Data Architecture for Aviation Thermometer Workshop.- Flexible Acoustic Sensing Technology for Gas Insulated Switchgear Equipment Condition Monitoring.- A Comprehensive Updated Review of Data Centers Under Industry 4.0: Architecture and Energy Efficiency Perspectives.- An Early Prediction Method for Arc Fault Risk Based on Tensor Decomposition and the MSC-Informer Model.- Research on Influencing Factors and Optimization Methods of Torque Ripple of Permanent-magnet Synchronous Motors.- Research on the Topology and Manufacturing Processes of Modular Amorphous Motors.- Preprocessing ECG Signals via SNR Classification for Robust ECG Reconstruction.- UAV Grouping and Power Allocation for the User Centric UAV-assisted MEC System.- Enhancing Side-Channel Resistance of ML-KEM Using Dynamic Clock Randomization.- Effects of Working Pressure on Electrochemical Performance of Mo2N Electrode Films.- Machine Learning-Accelerated Design Optimization of LDMOS Devices for High Breakdown Voltage and Low On-Resistance.- SSVEPformerX: Prior-Guided Dual-Branch Spectro-Temporal Fusion for Short-Window and Cross-Subject SSVEP Decoding.


Wei Deng (Senior Member, IEEE) received the B.S. degree from North China Electric Power University, Beijing, China, in 2004, and the Ph.D. degree in electrical engineering from the Institute of Electrical Engineering, Chinese Academy of Sciences, Beijing, in 2010. He is currently a Professor with the Institute of Electrical Engineering, Chinese Academy of Sciences. His research interests include control strategy and stability analysis of distributed generation, microgrid, and low voltage ac/dc power distribution system. 

Professor Fushuan Wen received the B.E. and M.E. degrees from Tianjin University, Tianjin, China, in 1985 and 1988, respectively, and the Ph.D. degree from Zhejiang University, Hangzhou, China, in 1991, all in electrical engineering. He joined the faculty of Zhejiang University in 1991, and has been a full professor and the director of the Institute of Power Economics and Information since 1997, and the director of Zhejiang University-Insigma Joint Research Center for Smart Grids since 2010.



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