This paper presents an interior point algorithm based on a.c. network model for determining the Nash supply function equilibrium (SFE) of bid-based electricity markets. The SFE problem is considered as a bi-level game. At the first level, the problem begins with the formulation of an optimal power flow (OPF) interior point-based algorithm to handle the independent system operator (ISO) problem for maximising social welfare. This algorithm is based on the OPF with a.c. network transmission model taking into account all the operating aspects such as the generation capacity limits, bus voltage limits, transmission line constraints, network losses and especially the effect of the reactive power. The resulting Karush-Kuhn-Tucker (KKT) conditions...
This paper sets out an alternative formulation for transmission planning in liberalised electricity ...
In this paper, the impact of transformer tap-ratio control on the electricity market equilibrium in ...
Deregulation is a growing trend and the electricity industry has not escaped its reaches. With world...
The linear supply function equilibrium (SFE) model can be used to investigate bid-based electricity ...
This study utilizes the primal-dual nonlinear interior point algorithm formulated in Part I of this ...
In this paper, the primal-dual nonlinear interior point method has been used as a basis for the deri...
A model of two-settlement electricity markets is introduced, which accounts for flow congestion, dem...
Nash equilibrium is usually used as the solution of generator's strategic bidding in electricity mar...
A model of two-settlement electricity markets is introduced, which accounts for flow con-gestion, de...
The paper proposes a formulation for a generalized Nash equilibrium model which incorporates the str...
We formulate a two-settlement equilibrium in competitive electricity markets as a subgame-perfect Na...
The transmission network switching is proposed in the literature as a way to improve social welfare ...
AbstractThis paper presents a dynamic bidding model of the power market based on the Nash equilibriu...
The research presented in this Thesis investigates the strategic behaviour of generating firms in bi...
By solving the Nash equilibrium of the electricity market, it is possible to observe the game proces...
This paper sets out an alternative formulation for transmission planning in liberalised electricity ...
In this paper, the impact of transformer tap-ratio control on the electricity market equilibrium in ...
Deregulation is a growing trend and the electricity industry has not escaped its reaches. With world...
The linear supply function equilibrium (SFE) model can be used to investigate bid-based electricity ...
This study utilizes the primal-dual nonlinear interior point algorithm formulated in Part I of this ...
In this paper, the primal-dual nonlinear interior point method has been used as a basis for the deri...
A model of two-settlement electricity markets is introduced, which accounts for flow congestion, dem...
Nash equilibrium is usually used as the solution of generator's strategic bidding in electricity mar...
A model of two-settlement electricity markets is introduced, which accounts for flow con-gestion, de...
The paper proposes a formulation for a generalized Nash equilibrium model which incorporates the str...
We formulate a two-settlement equilibrium in competitive electricity markets as a subgame-perfect Na...
The transmission network switching is proposed in the literature as a way to improve social welfare ...
AbstractThis paper presents a dynamic bidding model of the power market based on the Nash equilibriu...
The research presented in this Thesis investigates the strategic behaviour of generating firms in bi...
By solving the Nash equilibrium of the electricity market, it is possible to observe the game proces...
This paper sets out an alternative formulation for transmission planning in liberalised electricity ...
In this paper, the impact of transformer tap-ratio control on the electricity market equilibrium in ...
Deregulation is a growing trend and the electricity industry has not escaped its reaches. With world...