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Advanced Control and Operation of Microgrids and Power Distribution Systems
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In recent years, power systems have shifted from centralized generation and one-way transmission toward distributed architectures that are centered on renewable energy, energy storage, and electric vehicle charging. This transition highlights the need for advanced control and operational strategies in microgrids and distribution networks that not only enhance efficiency but also secure stability, flexibility, and reliability. With growing variability and forecasting uncertainties in renewable generation and demand, sophisticated approaches are required to manage uncertainty and sustain system stability. This Special Issue presents nine contributions on control, operation, optimization, energy management systems, and AI-based approaches for microgrids and distribution networks. The papers span theoretical modeling, algorithm development, hardware implementation, and case studies. Highlights include a switched-capacitor inverter reducing common-mode voltage, an ANN-assisted energy management framework integrating load and weather forecasting with DC exchange and storage scheduling, flexible operating envelopes for reverse power flow grids, techno-economic studies of underground systems, seamless AC/DC hybrid microgrid control, deep learning for transformer fault detection, and voltage regulation for inverter-based UPS systems. Collectively, these works reflect the technological trajectory toward more advanced and sustainable power systems. This volume provides researchers and practitioners with insights into the state of the art and points to promising directions for future research and applications.
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Keywords
- AC battery
- active damping
- Artificial Neural Networks
- Battery scheduling
- BP neural networks algorithm
- charge
- common-mode voltage
- Control Strategies
- Converter-based control
- Convex inner approximation method
- Current magnitude
- Data window
- DC grid
- DC microgrid
- DC-AC inverter
- deep learning
- Differential protection
- Discharge cycle test
- Distributed power supply
- distribution network
- Efficiency
- Electrical circuit model (ECM)
- electrolyte
- EMS
- Energy Efficiency
- energy prediction
- energy storage system (ESS)
- energy trading
- flow rate
- Forecast-aided EMS
- H7 inverter
- Hybrid AC
- Hyperellipsoid
- Industrial forecasting
- inrush current
- Interleaved full bridge converter
- Internal fault
- load forecasting
- MAPE
- MATLAB
- MCCB
- meteorological data
- microgrid
- Observer
- Operational domain
- Operational envelope
- Pole-zero cancellation
- Power correction factor stage
- power flow
- power quality
- PSO
- pulse width modulation
- Ring main unit
- Secondary substation
- Simulink
- Smooth switching between grid-connected and islanded modes
- stability control
- Switched-capacitor network
- The voltage exceeds the limit
- thema EDItEUR::K Economics, Finance, Business and Management::KN Industry and industrial studies::KNB Energy industries and utilities
- time series
- Underground compact station
- Underground distribution system
- uninterruptible power supply
- Unknown state
- Value of lost load
- Vanadium redox flow battery (VRFB)
- Vietnam
- voltage control
Links
DOI: 10.3390/books978-3-7258-5490-5Editions
