This study presents a new methodology based on risk/investment to solve transmission network expansion planning (TNEP) problem with multiple future scenarios. Three mathematical models related to TNEP problems considering multiple future generation and load scenarios are also presented. These models will provide planners with a meaningful risk assessment that enable them to determine the necessary funding for transmission lines at a permissible risk level. The results using test and real systems show that the proposed method presents better solutions compared with scenario analysis method. ©The Institution of Engineering and Technology 2013
The main focus of the transmission expansion planning is to find the optimal structure and least cos...
This paper shows a methodology for solving the Transmission Expansion Planning (TEP) problem when Mu...
This paper presents a mathematical model and a methodology to solve a transmission network expansion...
This paper proposes a mathematical model for transmission expansion employing optimization method wi...
Recent breakthroughs in Transmission Network Expansion Planning (TNEP) have demonstrated that the us...
This paper presents a multi-objective transmission expansion planning (TEP) framework. Rather than u...
This paper presents a multi-objective transmission expansion planning (TEP) framework. Rather than u...
The efficiency of the classic planning methods for solving realistic problems largely relies on an a...
© 2018 Elsevier LtdThe fast construction times of projects based on variable generation technologies...
The restructuring of global power industries has introduced a number of challenges, such as conflict...
As a result of the power industry restructuring and the increasing integration of large-scale renewa...
Renewable energy sources (RESs) are actively connected with the grid, and thus the requirement for t...
It will be important to develop a transmission network capable of handling future generation and loa...
Deregulation of the electric power industry has introduced new uncertainties for market participants...
This paper presents two mathematical models and one methodology to solve a transmission network expa...
The main focus of the transmission expansion planning is to find the optimal structure and least cos...
This paper shows a methodology for solving the Transmission Expansion Planning (TEP) problem when Mu...
This paper presents a mathematical model and a methodology to solve a transmission network expansion...
This paper proposes a mathematical model for transmission expansion employing optimization method wi...
Recent breakthroughs in Transmission Network Expansion Planning (TNEP) have demonstrated that the us...
This paper presents a multi-objective transmission expansion planning (TEP) framework. Rather than u...
This paper presents a multi-objective transmission expansion planning (TEP) framework. Rather than u...
The efficiency of the classic planning methods for solving realistic problems largely relies on an a...
© 2018 Elsevier LtdThe fast construction times of projects based on variable generation technologies...
The restructuring of global power industries has introduced a number of challenges, such as conflict...
As a result of the power industry restructuring and the increasing integration of large-scale renewa...
Renewable energy sources (RESs) are actively connected with the grid, and thus the requirement for t...
It will be important to develop a transmission network capable of handling future generation and loa...
Deregulation of the electric power industry has introduced new uncertainties for market participants...
This paper presents two mathematical models and one methodology to solve a transmission network expa...
The main focus of the transmission expansion planning is to find the optimal structure and least cos...
This paper shows a methodology for solving the Transmission Expansion Planning (TEP) problem when Mu...
This paper presents a mathematical model and a methodology to solve a transmission network expansion...