Title :
Multiobjective fuzzy optimal transaction planning based optimal power flow for electricity market
Author :
Ma, Rui ; Yan, Hongweng ; Tong, Xiaojiao
Author_Institution :
Sch. of Electr. & Inf., Changsha Univ. of Sci. & Technol.
fDate :
Nov. 29 2005-Dec. 2 2005
Abstract :
This paper presents a multi-objective fuzzy optimal transaction model based on optimal power flow for electricity market. The proposed mode! is formulated as multi-objective optimization problem of minimizing both pool purchase cost and the pollution emission, which takes the generator capacity, transmission lines capability and node voltage security constraints into account. Firstly, the pool purchase cost and emission objectives are optimized individually in order to define the membership function of objective, then, the multi-objective problem is reformulated into a new standard nonlinear problem by the fuzzy sets theory and max-min operator, finally, it is solved by interior point method and the results that corresponding to multi-objective optimization problem are gained. The simulation results of IEEE 6-generator 30-bus system show that the proposed model can make multi-objective optimization and ensure the multifactor fairness of bidding unit
Keywords :
air pollution control; cost reduction; fuzzy set theory; load flow; minimax techniques; power markets; power system economics; power system planning; IEEE 6-generator 30-bus system; bidding unit; electricity market; fuzzy sets theory; generator capacity; interior point method; max-min operator; membership function; multifactor fairness; multiobjective fuzzy optimal transaction planning; multiobjective optimization problem; node voltage security constraints; optimal power flow; pollution emission minimization; pool purchase cost minimization; standard nonlinear problem; transmission lines capability; Constraint optimization; Cost function; Electricity supply industry; Load flow; Optimization methods; Pollution; Power transmission lines; Security; Transmission line theory; Voltage; Fuzzy sets theory; Interior Point Method; Multi-objective optimization; Transaction planning; electricity market;
Conference_Titel :
Power Engineering Conference, 2005. IPEC 2005. The 7th International
Conference_Location :
Singapore
Print_ISBN :
981-05-5702-7
DOI :
10.1109/IPEC.2005.206890