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Advanced Approaches, Business Models, and Novel Techniques for Management and Control of Smart Grids
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The current power system should be renovated to fulfill social and industrial requests and economic advances. Hence, providing economic, green, and sustainable energy are key goals of advanced societies. In order to meet these goals, recent features of smart grid technologies need to have the potential to improve reliability, flexibility, efficiency, and resiliency. This book aims to address the mentioned challenges by introducing advanced approaches, business models, and novel techniques for the management and control of future smart grids.
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Keywords
- activity detection
- activity prediction
- activity recognition
- anti-islanding
- black-box modeling
- communication system delay
- demand-side management
- digital microgrid
- Dijkstra algorithm
- distributed energy resources
- distributed generation
- distributed generations
- earth fault location
- energy and comfort management
- energy management system
- Energy Storage
- fractal design
- fractal grid
- frequency stability
- History of engineering & technology
- holistic power system architecture
- integer linear programming
- intrinsic mode functions (IMFs)
- islanded mode
- Islanding detection
- Large-scale
- LINK-paradigm
- load frequency control
- local electricity market
- low-voltage active distribution network
- market design
- microgrid
- modern power system
- n/a
- negative sequence current
- non-homogeneous model
- online identification
- phasor measurement units (PMUs)
- power grid
- power system oscillations
- Prony method
- Protection
- recursive damped least squares
- routing energy
- sequence components
- smart building
- Smart grid
- Stability
- Synchronization
- Technology, engineering, agriculture
- Technology: general issues
- uncertainty
- virtual inertia
- wide-area measurement system (WAMS)