MULTIOBJECTIVE DECISION-MAKING IN STOCHASTIC ECONOMIC-DISPATCH

被引:10
作者
DHILLON, JS [1 ]
PARTI, SC [1 ]
KOTHARI, DP [1 ]
机构
[1] THAPAR INST ENGN & TECHNOL,DEPT ELECT ENGN,PATIALA 147001,PUNJAB,INDIA
来源
ELECTRIC MACHINES AND POWER SYSTEMS | 1995年 / 23卷 / 03期
关键词
D O I
10.1080/07313569508955624
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
Recently, multiple objective decision making has been well established as a practical approach to seek satisfactory solutions to decision making problems in limited resources, information and cognitive ability of the Decision Maker (DM). In the past, it was normal to assume well behaved and deterministic system data. Now the trend is to assume them variable and uncertain for more realistic approach. This paper deals with decision making methodology based on fuzzy set theory in order to determine the optimal generation dispatch with due consideration of uncertainties in system production cost and randomness of load demand. The classical economic dispatch problem is formulated as stochastic multiobjective optimisation problem where operating cost and variance of generation mismatch are two non-commensurable objectives. Such problems are solved to generate non-inferior solutions. Weighted sum technigue is used to simulate trade-off relation among the conflicting objectives in the non-inferior domain. Once the trade-off has been obtained, fuzzy set theory helps the power system operator (DM) to choose the optimal operating point over the trade-off curve and adjust the generation levels in the most economic manner. Validity and effectiveness of the proposed method has been demonstrated by analysing a sample power system comprising three generators.
引用
收藏
页码:289 / 301
页数:13
相关论文
共 16 条
  • [1] Chowdhury B.H., Rahman S., A Review of Recent Advances in Economic Dispatch, IEEE Trans. On Power Systems, 5, 4, pp. 1248-1259, (1990)
  • [2] Edwin K.W., Machate R.D., Influence of Inaccurate Input Data On The Optimal Shortterm Operation of Power Generation System, IFAC 1980 Symposium on Automatic Control in Power, Generation
  • [3] Blaszczynski G.M., Sensitivity Study of the Economic Dispatch, Proceedings of 1975 PICA Conference
  • [4] Borkowska B., Probabilistic Load Flow, IEEE Trans, on Power Apparatus and Systems, 93, pp. 752-759, (1974)
  • [5] Dopazo J.F., Klitin O.A., Sasson A.M., Stochastic Load Flows, IEEE Trans, on Power Apparatus and Systems, 94, 2, pp. 299-309, (1975)
  • [6] Viviani G.L., Heydt G.T., Stochastic Optimal Energy Dispatch, IEEE Trans. On Power Apparatus and Systems, 100, 7, pp. 3221-3228, (1981)
  • [7] Yakin M.Z., Stochastic Economic Dispatch in Electrical Power System, Eng.Opt, 8, pp. 119-135, (1985)
  • [8] El-Hawary M.E., Mbamalu G., Stochastic Optimal Load Flow-A Combined Quasi-Newton and Conjugate Gradiant Technique, Electrical Power and Energy Systems, 11, 2, pp. 85-93, (1989)
  • [9] Parti S.C., Kothari D.P., Gupta P.V., Economic Thermal Power Dispatch, Journal of Institution of Engineers (India), 64, 2, pp. 126-132, (1983)
  • [10] Wadhwa C.L., Jain N.K., Multiple Objective Optimal Load Flow: A New Perspective, IEE. Proceedings, 137, 1, pp. 13-18, (1990)