In this paper, we investigate the representation of stochastic wind power generation in the unit commitment (UC) problem, which aims to dispatch generators and determine their operating outputs at minimal cost. A computational framework, including both thermal generators and wind farms, is developed. The probability of wind power generation based on the Weibull distribution is included in the proposed model. The optimization problem is solved using interior point method (IPM). The model is tested on a benchmark system involving six thermal units and one wind farm, and a set of numerical case studies is reported
This paper proposes a power-based network-constrained unit commitment (UC) model as an alternative t...
Abstract—We present a two-stage stochastic programming model for committing reserves in systems with...
The increasing penetration of uncertain generation such as wind and solar in power systems imposes n...
Wind energy has attracted much attention as a clean energy resource with low running cost over the l...
Abstract—Wind Energy has become the renewable energy with the highest installed capacity in some Eur...
This paper presents a stochastic cost model and a solution technique for optimal scheduling of the g...
Due to the high randomness and volatility of renewable energy sources such as wind energy, the tradi...
Reliable power production is critical to theprofitability of electricity utilities. Power generators...
The Unit commitment (UC) problem in power systems has been studied for a long time; however, many ne...
We present a computational framework for integrating the state-of-the-art Weather Research and Forec...
In this paper we present a unit commitment model for studying the impact of large-scale wind integra...
Due to uncertainty of wind velocity, wind power generators don’t have deterministic output power. Ut...
The cost of balancing supply and demand will increase as power systems are decarbonised, because the...
International audienceDecision making regarding the operation of renewable-integrated power systems ...
Grid integration of renewable resources such as solar and wind energy can significantly raise the le...
This paper proposes a power-based network-constrained unit commitment (UC) model as an alternative t...
Abstract—We present a two-stage stochastic programming model for committing reserves in systems with...
The increasing penetration of uncertain generation such as wind and solar in power systems imposes n...
Wind energy has attracted much attention as a clean energy resource with low running cost over the l...
Abstract—Wind Energy has become the renewable energy with the highest installed capacity in some Eur...
This paper presents a stochastic cost model and a solution technique for optimal scheduling of the g...
Due to the high randomness and volatility of renewable energy sources such as wind energy, the tradi...
Reliable power production is critical to theprofitability of electricity utilities. Power generators...
The Unit commitment (UC) problem in power systems has been studied for a long time; however, many ne...
We present a computational framework for integrating the state-of-the-art Weather Research and Forec...
In this paper we present a unit commitment model for studying the impact of large-scale wind integra...
Due to uncertainty of wind velocity, wind power generators don’t have deterministic output power. Ut...
The cost of balancing supply and demand will increase as power systems are decarbonised, because the...
International audienceDecision making regarding the operation of renewable-integrated power systems ...
Grid integration of renewable resources such as solar and wind energy can significantly raise the le...
This paper proposes a power-based network-constrained unit commitment (UC) model as an alternative t...
Abstract—We present a two-stage stochastic programming model for committing reserves in systems with...
The increasing penetration of uncertain generation such as wind and solar in power systems imposes n...