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Distributed Power Generation Scheduling, Modelling and Expansion Planning
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Distributed generation is becoming more important in electrical power systems due to the decentralization of energy production. Within this new paradigm, new approaches for the operation and planning of distributed power generation are yet to be explored. This book deals with distributed energy resources, such as renewable-based distributed generators and energy storage units, among others, considering their operation, scheduling, and planning. Moreover, other interesting aspects such as demand response, electric vehicles, aggregators, and microgrid are also analyzed. All these aspects constitute a new paradigm that is explored in this Special Issue.
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Keywords
- 5G
- active power management
- Allocation
- arbitrage
- battery degradation
- Benders’ decomposition
- combined economic emission dispatch
- distributed energy resources
- distributed generation planning (DGP)
- distributed hierarchical strategy
- distribution network planning
- distribution networks
- distribution system operators
- dynamic economic dispatch
- Electric vehicles
- electric vehicles aggregator
- electricity markets
- emission constraints
- energy curtailment
- energy management system
- energy storage system
- energy storages
- environment-based demand response
- flexibility
- frequency control
- IEC 61850
- isolated AC/DC hybrid microgrid
- local services
- LoRa
- mathematical programming
- micro-grid
- MILP optimization
- multi-agent system
- multi-objective optimization
- optimal location
- penalty factor
- Renewable energy sources
- renewable energy sources (RES)
- Risk assessment
- small scale distributed generation
- Stochastic programming
- system modeling
- system services
- Technology, engineering, agriculture
- Technology: general issues
- two-layer consensus method
- two-stage stochastic mixed-integer linear programming (MILP)
- weighting update artificial bee colony