This paper proposes a power-based network-constrained unit commitment (UC) model as an alternative to the traditional deterministic UCs to deal with wind generation uncertainty. The formulation draws a clear distinction between power-capacity and ramp-capability reserves to deal with wind production uncertainty. These power and ramp requirements can be obtained from wind forecast information. The model is formulated as a power-based UC, which schedules power-trajectories instead of the traditional energy-blocks and takes into account the inherent startup and shutdown power trajectories of thermal units. These characteristics allow a correct representation of unit's ramp schedule which define their ramp availability for reserves. The propose...
The Unit commitment (UC) problem in power systems has been studied for a long time; however, many ne...
Grid integration of renewable resources such as solar and wind energy can significantly raise the le...
An efficient unit commitment planning must consider frequency regulation capacity in the model. Such...
This paper proposes a power-based network-constrained unit commitment (UC) model as an alternative t...
In recent years, high penetration of variable generating sources, such as wind power, has challenged...
A high wind-power penetration level causes increased uncertainty in power system operation because o...
The existing optimization approaches regarding network-constrained unit commitment with large wind p...
In this paper we present a unit commitment model for studying the impact of large-scale wind integra...
The penetration level of renewable generation has increased significantly in recent years, which has...
In this work, the system evaluates the impact of considering a stochastic approach on the day ahead ...
The increasing penetration of uncertain generation such as wind and solar in power systems imposes n...
International audienceDecision making regarding the operation of renewable-integrated power systems ...
Abstract—The traditional unit commitment and economic dispatch approaches with deterministic spinnin...
As more clean energy sources contribute to the electrical grid, the stress on generation scheduling ...
In recent years, the share of renewable energy sources (RES) in the electricity generation mix has b...
The Unit commitment (UC) problem in power systems has been studied for a long time; however, many ne...
Grid integration of renewable resources such as solar and wind energy can significantly raise the le...
An efficient unit commitment planning must consider frequency regulation capacity in the model. Such...
This paper proposes a power-based network-constrained unit commitment (UC) model as an alternative t...
In recent years, high penetration of variable generating sources, such as wind power, has challenged...
A high wind-power penetration level causes increased uncertainty in power system operation because o...
The existing optimization approaches regarding network-constrained unit commitment with large wind p...
In this paper we present a unit commitment model for studying the impact of large-scale wind integra...
The penetration level of renewable generation has increased significantly in recent years, which has...
In this work, the system evaluates the impact of considering a stochastic approach on the day ahead ...
The increasing penetration of uncertain generation such as wind and solar in power systems imposes n...
International audienceDecision making regarding the operation of renewable-integrated power systems ...
Abstract—The traditional unit commitment and economic dispatch approaches with deterministic spinnin...
As more clean energy sources contribute to the electrical grid, the stress on generation scheduling ...
In recent years, the share of renewable energy sources (RES) in the electricity generation mix has b...
The Unit commitment (UC) problem in power systems has been studied for a long time; however, many ne...
Grid integration of renewable resources such as solar and wind energy can significantly raise the le...
An efficient unit commitment planning must consider frequency regulation capacity in the model. Such...