Title :
Market-Based Generation and Transmission Planning With Uncertainties
Author :
Roh, Jae Hyung ; Shahidehpour, Mohammad ; Wu, Lei
Author_Institution :
Electr. & Comput. Eng. Dept., Illinois Inst. of Technol., Chicago, IL, USA
Abstract :
This paper presents a stochastic coordination of generation and transmission expansion planning model in a competitive electricity market. The Monte Carlo simulation method is applied to consider random outages of generating units and transmission lines as well as inaccuracies in the long-term load forecasting. The scenario reduction technique is introduced for reducing the computational burden of a large number of planning scenarios. The proposed model assumes a capacity payment mechanism and a joint energy and transmission market for investors´ costs recovery. The proposed approach simulates the decision making behavior of individual market participants and the ISO. It is an iterative process for simulating the interactions among GENCOs, TRANSCOs and ISO. The iterative process might be terminated by the ISO based on a pre-specified stopping criterion. The case studies illustrate the applications of proposed stochastic method in a coordinated generation and transmission planning problem when considering uncertainties.
Keywords :
Monte Carlo methods; iterative methods; load forecasting; power markets; power transmission lines; stochastic processes; GENCO; ISO; Monte Carlo simulation method; TRANSCO; electricity market; iterative process; load forecasting; scenario reduction technique; stochastic coordination; transmission expansion planning model; transmission lines; Competitive electricity market; Monte Carlo simulation; coordination of generation and transmission planning; mixed integer programming; random outages and uncertainty; transmission network security;
Journal_Title :
Power Systems, IEEE Transactions on
DOI :
10.1109/TPWRS.2009.2022982