This paper presents the solving unit commitment (UC) problem using Modified Subgradient Method (MSG) method combined with Simulated Annealing (SA) algorithm. UC problem is one of the important power system engineering hard-solving problems. The Lagrangian relaxation (LR) based methods are commonly used to solve the UC problem. The main disadvantage of this group of methods is the difference between the dual and the primal solution which gives some significant problems on the quality of the feasible solution. In this paper, MSG method which does not require any convexity and differentiability assumptions is used for solving the UC problem. MSG method depending on the initial value reaches zero duality gap. SA algorithm is used in order to as...
In this paper, we propose a new formulation based on benders decomposition approach to solve the the...
Abstract. In this paper, we present a unified decommitment method to solve the unit commitment probl...
An effort to develop a unit commitment approach capable of handling large power systems consisting o...
The Lagrangian relaxation- (LR-) based methods are commonly used to solve the thermal unit commitmen...
The unit commitment (UC) problem which is an important subject in power system engineering is solved...
This paper presents a simulated annealing algorithm (SAA) to solve the unit commitment problem (UCP)...
This thesis is devoted to the optimal commitment of generation units in an all-thermal, single or mu...
This paper presents a Simulated Annealing Algorithm (SAA) to solve the Unit Commitment Problem (UCP)...
We propose a new hybrid algorithm for solving the unit commitment problem (UCP). The algorithm integ...
Unit commitment (UC) problem is an important optimizing task for scheduling the on/off states of gen...
In this paper a method for solving a mid-term unit commitment problem in a large scale thermal power...
A hybrid algorithm has been developed for the solution of the unit commitment problem. This hybrid t...
Four hybrid algorithms has been developed for the solution of the unit commitment problem. They us...
This paper presents a new algorithm based on integrating simulated annealing and fuzzy logic methods...
The paper deals with the solution of the optimal short-term unit commitment (UC) problem in an elect...
In this paper, we propose a new formulation based on benders decomposition approach to solve the the...
Abstract. In this paper, we present a unified decommitment method to solve the unit commitment probl...
An effort to develop a unit commitment approach capable of handling large power systems consisting o...
The Lagrangian relaxation- (LR-) based methods are commonly used to solve the thermal unit commitmen...
The unit commitment (UC) problem which is an important subject in power system engineering is solved...
This paper presents a simulated annealing algorithm (SAA) to solve the unit commitment problem (UCP)...
This thesis is devoted to the optimal commitment of generation units in an all-thermal, single or mu...
This paper presents a Simulated Annealing Algorithm (SAA) to solve the Unit Commitment Problem (UCP)...
We propose a new hybrid algorithm for solving the unit commitment problem (UCP). The algorithm integ...
Unit commitment (UC) problem is an important optimizing task for scheduling the on/off states of gen...
In this paper a method for solving a mid-term unit commitment problem in a large scale thermal power...
A hybrid algorithm has been developed for the solution of the unit commitment problem. This hybrid t...
Four hybrid algorithms has been developed for the solution of the unit commitment problem. They us...
This paper presents a new algorithm based on integrating simulated annealing and fuzzy logic methods...
The paper deals with the solution of the optimal short-term unit commitment (UC) problem in an elect...
In this paper, we propose a new formulation based on benders decomposition approach to solve the the...
Abstract. In this paper, we present a unified decommitment method to solve the unit commitment probl...
An effort to develop a unit commitment approach capable of handling large power systems consisting o...