Low-carbon electric power systems are often characterized by high shares of renewables, such as wind power. The variable nature and limited predictability of some renewables will require novel system operation methods to properly size and cost-efficiently allocate the required reserves. The current state-of-the-art stochastic unit commitment models internalize this sizing and allocation process by considering a set of scenarios representing the stochastic input during the unit commitment optimization. This results in a cost-efficient scheduling of reserves, while maintaining the reliability of the system. However, calculation times are typically high. Therefore, in this paper, we merge a state-of-the-art probabilistic reserve sizing techniq...
This paper proposes a stochastic mixed-integer linear approach to deal with a short-term unit commit...
The unit commitment is still a widely studied problem, especially when more renewable energy of stoc...
The cost of balancing supply and demand will increase as power systems are decarbonised, because the...
Low-carbon electric power systems are often characterized by high shares of renewables, such as wind...
Grid integration of renewable resources such as solar and wind energy can significantly raise the le...
© 1969-2012 IEEE. In power systems with high shares of variable and limitedly predictable renewables...
The massive integration of variable and limitedly predictable electricity generation from renewable ...
In recent years, high penetration of variable generating sources, such as wind power, has challenged...
In recent years, high penetration of variable generating sources, such as wind power, has challenged...
Due to unforeseen variations in wind speed profiles, wind farm integrations are recognized as interm...
Due to unforeseen variations in wind speed profiles, wind farm integrations are recognized as interm...
Due to unforeseen variations in wind speed profiles, wind farm integrations are recognized as interm...
Due to unforeseen variations in wind speed profiles, wind farm integrations are recognized as interm...
Abstract—The traditional unit commitment and economic dispatch approaches with deterministic spinnin...
This paper proposes a stochastic mixed-integer linear approach to deal with a short-term unit commit...
This paper proposes a stochastic mixed-integer linear approach to deal with a short-term unit commit...
The unit commitment is still a widely studied problem, especially when more renewable energy of stoc...
The cost of balancing supply and demand will increase as power systems are decarbonised, because the...
Low-carbon electric power systems are often characterized by high shares of renewables, such as wind...
Grid integration of renewable resources such as solar and wind energy can significantly raise the le...
© 1969-2012 IEEE. In power systems with high shares of variable and limitedly predictable renewables...
The massive integration of variable and limitedly predictable electricity generation from renewable ...
In recent years, high penetration of variable generating sources, such as wind power, has challenged...
In recent years, high penetration of variable generating sources, such as wind power, has challenged...
Due to unforeseen variations in wind speed profiles, wind farm integrations are recognized as interm...
Due to unforeseen variations in wind speed profiles, wind farm integrations are recognized as interm...
Due to unforeseen variations in wind speed profiles, wind farm integrations are recognized as interm...
Due to unforeseen variations in wind speed profiles, wind farm integrations are recognized as interm...
Abstract—The traditional unit commitment and economic dispatch approaches with deterministic spinnin...
This paper proposes a stochastic mixed-integer linear approach to deal with a short-term unit commit...
This paper proposes a stochastic mixed-integer linear approach to deal with a short-term unit commit...
The unit commitment is still a widely studied problem, especially when more renewable energy of stoc...
The cost of balancing supply and demand will increase as power systems are decarbonised, because the...