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Optimal self-healing strategy for microgrid islanding
by
Sun, Wei
, Ma, Shanshan
, Roofegari nejad, Reza
, Alvarez-Fernandez, Inalvis
, Golshani, Amir
in
B0170N Reliability
/ B0260 Optimisation techniques
/ B8110B Power system management, operation and economics
/ B8120J Distribution networks
/ B8120K Distributed power generation
/ C1180 Optimisation techniques
/ C3340H Control of electric power systems
/ comprehensive microgrid
/ cost-effective electricity
/ Distributed generation
/ distributed power generation
/ Electric power systems
/ Electric Reliability Technology Solutions microgrid
/ Electrical loads
/ Electricity
/ Electricity distribution
/ Emissions
/ grid-connected
/ grid-connected main grid
/ Healing
/ integer programming
/ islanded mode
/ islanding strategy
/ Linear programming
/ Load shedding
/ low carbon emissions
/ main grid
/ microgrid islanding
/ optimal self-healing strategy
/ optimisation
/ Power dispatch
/ power grids
/ POWER TRANSMISSION AND DISTRIBUTION
/ Quadratic programming
/ Reconfiguration
/ renewable energy sources
/ renewable generation
/ renewable resource based microgrids
/ Renewable resources
/ Research Article
/ self-healing problem
/ smooth islanding
/ Systems stability
2018
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Optimal self-healing strategy for microgrid islanding
by
Sun, Wei
, Ma, Shanshan
, Roofegari nejad, Reza
, Alvarez-Fernandez, Inalvis
, Golshani, Amir
in
B0170N Reliability
/ B0260 Optimisation techniques
/ B8110B Power system management, operation and economics
/ B8120J Distribution networks
/ B8120K Distributed power generation
/ C1180 Optimisation techniques
/ C3340H Control of electric power systems
/ comprehensive microgrid
/ cost-effective electricity
/ Distributed generation
/ distributed power generation
/ Electric power systems
/ Electric Reliability Technology Solutions microgrid
/ Electrical loads
/ Electricity
/ Electricity distribution
/ Emissions
/ grid-connected
/ grid-connected main grid
/ Healing
/ integer programming
/ islanded mode
/ islanding strategy
/ Linear programming
/ Load shedding
/ low carbon emissions
/ main grid
/ microgrid islanding
/ optimal self-healing strategy
/ optimisation
/ Power dispatch
/ power grids
/ POWER TRANSMISSION AND DISTRIBUTION
/ Quadratic programming
/ Reconfiguration
/ renewable energy sources
/ renewable generation
/ renewable resource based microgrids
/ Renewable resources
/ Research Article
/ self-healing problem
/ smooth islanding
/ Systems stability
2018
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Optimal self-healing strategy for microgrid islanding
by
Sun, Wei
, Ma, Shanshan
, Roofegari nejad, Reza
, Alvarez-Fernandez, Inalvis
, Golshani, Amir
in
B0170N Reliability
/ B0260 Optimisation techniques
/ B8110B Power system management, operation and economics
/ B8120J Distribution networks
/ B8120K Distributed power generation
/ C1180 Optimisation techniques
/ C3340H Control of electric power systems
/ comprehensive microgrid
/ cost-effective electricity
/ Distributed generation
/ distributed power generation
/ Electric power systems
/ Electric Reliability Technology Solutions microgrid
/ Electrical loads
/ Electricity
/ Electricity distribution
/ Emissions
/ grid-connected
/ grid-connected main grid
/ Healing
/ integer programming
/ islanded mode
/ islanding strategy
/ Linear programming
/ Load shedding
/ low carbon emissions
/ main grid
/ microgrid islanding
/ optimal self-healing strategy
/ optimisation
/ Power dispatch
/ power grids
/ POWER TRANSMISSION AND DISTRIBUTION
/ Quadratic programming
/ Reconfiguration
/ renewable energy sources
/ renewable generation
/ renewable resource based microgrids
/ Renewable resources
/ Research Article
/ self-healing problem
/ smooth islanding
/ Systems stability
2018
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Journal Article
Optimal self-healing strategy for microgrid islanding
2018
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Overview
Renewable resource based microgrids provide reliable and cost-effective electricity with low carbon emissions. The flexibility of operating in grid-connected or islanded modes enables a microgrid to serve loads reliably. In the case of unexpected events happening to the main grid, the microgrid will isolate itself and operate in islanded mode to prevent any adversary impacts. The availability of renewable generation in the microgrid has significant impacts on the islanding strategy and different scenarios need to be considered. This study proposes a comprehensive microgrid self-healing strategy under different circumstances. The proposed strategy encompasses generation re-dispatch, network reconfiguration, and load shedding. The microgrid self-healing problem is formulated as a mixed-integer quadratic programming problem, which provides a globally optimal solution to facilitate smooth islanding of the microgrid. A modified Consortium for Electric Reliability Technology Solutions microgrid is used to conduct simulation under various scenarios. The simulation results demonstrate the efficiency of the proposed self-healing strategy in minimising costs of load shedding and generation with optimal switching actions.
Publisher
The Institution of Engineering and Technology,John Wiley & Sons, Inc,Wiley
Subject
/ B0260 Optimisation techniques
/ B8110B Power system management, operation and economics
/ B8120J Distribution networks
/ B8120K Distributed power generation
/ C1180 Optimisation techniques
/ C3340H Control of electric power systems
/ distributed power generation
/ Electric Reliability Technology Solutions microgrid
/ Healing
/ optimal self-healing strategy
/ POWER TRANSMISSION AND DISTRIBUTION
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