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Transmission Network Expansion Planning

2021
This chapter analyzes transmission network expansion planning (TNEP), aimed at determining the optimal approach for adequate selection of transmission lines to be constructed to meet the growing energy demand, as well as facilitating power transfer from far-away locations to consumers.
Nnamdi Nwulu, Saheed Lekan Gbadamosi
openaire   +1 more source

Robust transmission expansion planning

European Journal of Operational Research, 2015
Abstract The work reported in this paper addresses the problem of transmission expansion planning under uncertainty in an electric energy system. We consider different sources of uncertainty, including future demand growth and the availability of generation facilities, which are characterized for different regions within the electric energy system ...
C. Ruiz, A.J. Conejo
openaire   +1 more source

Transmission expansion planning flexibility

2005 International Power Engineering Conference, 2005
In recent years, the issue of flexibility has become increasingly important to power system planning. Generation flexibility has been under continuous research for many years; however there is little research on transmission expansion planning flexibility, which has attracted more and more attention due to the increasing uncertainties in a competitive ...
M. Lu, Z.Y. Dong, T.K. Saha
openaire   +1 more source

Bilevel Conic Transmission Expansion Planning

IEEE Transactions on Power Systems, 2018
In this study, a bilevel transmission expansion planning model using conic ac power flow formulation is presented. Both computational and simulation results of this model on three test systems are presented, which show that the resulting expansion plans, compared to those derived from a conventional linear power flow based bilevel model, are more ...
Hossein Haghighat, Bo Zeng
openaire   +1 more source

Deregulated environment transmission expansion planning

2011 IEEE EUROCON - International Conference on Computer as a Tool, 2011
The Transmission System Operator (TSO) is responsible for the power system operation. It has to provide the transmission network maintenance and development, having as a goal the safety, reliable and economical operation of the power system. Additionally, it has to fulfil the environment constraints and, most important, to support the development of ...
C. Barbulescu   +5 more
openaire   +1 more source

Transmission expansion planning: A review

2016 International Conference on Energy Efficient Technologies for Sustainability (ICEETS), 2016
Modern electric power systems consist of large-scale highly complex interconnected transmission systems and, thus, transmission expansion planning (TEP) has become a significant power system optimization problem in real time application. The TEP problem is a large scale, complex and nonlinear combinatorial problem of mixed integer nature where the ...
null Niharika   +2 more
openaire   +1 more source

Market-based transmission expansion planning

2011 IEEE/PES Power Systems Conference and Exposition, 2011
This paper presents a market-based transmission expansion planning model and compares it with a traditional reliability-based transmission planning model. Reliability-based transmission planning tries to install new lines at minimal cost while fulfilling system reliability criteria.
Yang Gu, James McCalley
openaire   +1 more source

Transmission Expansion Planning From Past to Future

2006 IEEE PES Power Systems Conference and Exposition, 2006
Transmission expansion planning (TEP) has faced a significant change since the introduction of deregulation. It becomes even more complicated. Algorithms have to be changed to meet new challenges. This paper organizes and classifies existing TEP algorithms in both regulated and deregulated environment so as to facilitate other research works in this ...
Wu, FF, Zhong, J, Ng, SKK, Lee, CW
openaire   +2 more sources

Oscillatory stability considerations in transmission expansion planning

IEEE Transactions on Power Systems, 1989
Due to fast economic growth on the island of Taiwan, load demand in Taiwan Power Company (TPC) has been rapidly increasing in the past ten years and is expected to continue throughout the next decade. By 1995, the peak load demand in Taiwan is forecasted to reach 16,000 MW, an increase of 60% from the present level of 10,000 MW.
Huang, P. H.   +3 more
openaire   +1 more source

Transmission surplus capacity based power transmission expansion planning

Electric Power Systems Research, 2010
A power transmission expansion planning model with consideration of transmission surplus capacity and network load factor is presented. With traditional planning model, some transmission lines will operate on high load factors due to ignorance of the load levels of transmission lines.
Gang Qu   +4 more
openaire   +1 more source

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