Nodal probabilistic production cost simulation of composite power system

被引:1
作者
Choi, Jaeseok [1 ]
Mount, Timothy [2 ]
Thomas, Robert [1 ]
机构
[1] Cornell Univ, Dept Elect & Comp Engn, Ithaca, NY 14850 USA
[2] Cornell Univ, Sch Appl Econom & Management, Ithaca, NY 14850 USA
来源
2006 IEEE/PES POWER SYSTEMS CONFERENCE AND EXPOSITION. VOLS 1-5 | 2006年
关键词
nodal probabilistic production cost simulation; composite power system effective load duration curve; reliability evaluation; integral convolution;
D O I
10.1109/PSCE.2006.296425
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
This paper illustrates a nodal probabilistic production cost simulation at the load point of a composite power system for assessing operating cost in long term expansion planning of power system. This new nodal production cost simulation model includes capacities and uncertainties of generators as well as transmission lines. This simulation methodology comes from the nodal composite power system equivalent load duration curve(CMELDC) based on the new effective load model at load points. The nodal CMELDC can be obtained from convolution integral processing of the outage capacity probabilistic distribution function of the fictitious generator and the original load duration curve given at the load point. It is expected in future that the new simulation model based on the nodal CMELDC proposed in this study will provide some solutions to many problems based on nodal and decentralized operation and control of an electric power systems under competition environment. The nodal CMELDC based on the new model at load points can extend the application areas of nodal probabilistic production cost simulation, probabilistic congestion cost assessment, analytical method approached outage cost assessment and nodal reliability evaluation etc. at load points in future. The characteristics and effectiveness of this new simulation model are illustrated by a case study of a test system.
引用
收藏
页码:846 / +
页数:3
相关论文
共 21 条
[1]  
[Anonymous], 1977, POWER SYSTEM PLANNIN
[2]   Enhanced adequacy equivalent for composite power system reliability evaluation [J].
Billinton, R ;
Zhang, W .
IEE PROCEEDINGS-GENERATION TRANSMISSION AND DISTRIBUTION, 1996, 143 (05) :420-426
[3]   A SECURITY BASED APPROACH TO COMPOSITE POWER-SYSTEM RELIABILITY EVALUATION [J].
BILLINTON, R ;
KHAN, E ;
ENDRENYI, J .
IEEE TRANSACTIONS ON POWER SYSTEMS, 1992, 7 (01) :65-72
[4]  
Billinton R., 1984, Reliability Evaluation of Power Systems, DOI DOI 10.1007/978-1-4615-7731-7
[5]  
Billinton R., 1984, RELIABILITY EVALUATI
[6]  
Billinton R., 1994, Reliability assessment of electrical power systems using Monte Carlo methods
[7]   A method for transmission system expansion planning considering probabilistic reliability criteria [J].
Choi, J ;
Tran, T ;
El-Keib, ARA ;
Thomas, R ;
Oh, S ;
Billinton, R .
IEEE TRANSACTIONS ON POWER SYSTEMS, 2005, 20 (03) :1606-1615
[8]   Development of a nodal effective load model considering transmission system element unavailabilities [J].
Choi, J ;
Billinton, R ;
Futuhi-Firuzabed, M .
IEE PROCEEDINGS-GENERATION TRANSMISSION AND DISTRIBUTION, 2005, 152 (01) :79-89
[9]   A fuzzy branch and bound-based transmission system expansion planning for the highest satisfaction level of the decision maker [J].
Choi, J ;
El-Keib, AA ;
Tran, T .
IEEE TRANSACTIONS ON POWER SYSTEMS, 2005, 20 (01) :476-484
[10]  
CHOI J, 2000, P IEEE PES SM2000 C