This paper presents a methodology for the placement and sizing evaluation of distributed generation (DG) in electric power systems. The candidate locations for DG placement are identified on the bases of Locational Marginal Prices (LMP's) obtained from an optimal power flow solution. The problem is formulated for two different objectives: social welfare maximization and profit maximization. For each DG unit an optimal placement is identified for each of the objectives
Abstract — Matlab is one the important programming stream and consider as hottest research area now ...
Distributed generations (DGs) have important benefits in the electric power industry, such as a decr...
This paper presents a methodology for optimal sizing and placement of distributed generation (DG) in...
This article presents two new methodologies for the optimal placement of distributed generation (DG)...
This paper presents two new methodologies for optimal placement of distributed generation (DG) in an...
ABSTRACT: Distributed Generation (DG) resources have a lot of concentration in recent times due to i...
Improvement in efficiency of distribution system by the placement of small-size generators (distribu...
For over a decade, distributed generations (DGs) have sufficiently convinced the researchers that th...
To reduce power disruptions in power distribution systems, it is important to install distributed ge...
The implementation of Distributed Generation (DG) in distribution networks has spread all over the w...
This paper addresses a novel technique for placement of distributed generation (DG) in electric powe...
Distributed generation (DG) has increased ever attention in the distribution system from last few ye...
To increase the maximum possible benefits of technical, economic and environmental aspects, the opti...
The optimal sizing and placement of Distributed Generation units (DG) are becoming very attractive t...
In this paper, the approach focused on the variables involved in assessing the quality of a distribu...
Abstract — Matlab is one the important programming stream and consider as hottest research area now ...
Distributed generations (DGs) have important benefits in the electric power industry, such as a decr...
This paper presents a methodology for optimal sizing and placement of distributed generation (DG) in...
This article presents two new methodologies for the optimal placement of distributed generation (DG)...
This paper presents two new methodologies for optimal placement of distributed generation (DG) in an...
ABSTRACT: Distributed Generation (DG) resources have a lot of concentration in recent times due to i...
Improvement in efficiency of distribution system by the placement of small-size generators (distribu...
For over a decade, distributed generations (DGs) have sufficiently convinced the researchers that th...
To reduce power disruptions in power distribution systems, it is important to install distributed ge...
The implementation of Distributed Generation (DG) in distribution networks has spread all over the w...
This paper addresses a novel technique for placement of distributed generation (DG) in electric powe...
Distributed generation (DG) has increased ever attention in the distribution system from last few ye...
To increase the maximum possible benefits of technical, economic and environmental aspects, the opti...
The optimal sizing and placement of Distributed Generation units (DG) are becoming very attractive t...
In this paper, the approach focused on the variables involved in assessing the quality of a distribu...
Abstract — Matlab is one the important programming stream and consider as hottest research area now ...
Distributed generations (DGs) have important benefits in the electric power industry, such as a decr...
This paper presents a methodology for optimal sizing and placement of distributed generation (DG) in...