Title :
Spider area-based multi-objective stochastic energy and ancillary services dispatch
Author :
Kargarian, Amin ; Yong Fu
Author_Institution :
Dept. of Electr. & Comput. Eng., Mississippi State Univ., Starkville, MS, USA
Abstract :
This paper presents a multi-objective stochastic optimization algorithm for coupled energy, reserve and reactive power dispatch in electricity markets. The algorithm intends to minimize expected total market payment, transmission congestion probability and power system emission. To guarantee secure and reliable operation of power systems even after the occurrence of disturbances, two preventive actions, maximizing expected voltage security margin and expected reactive power reserve, are incorporated into the proposed multiobjective algorithm. A spider area-based multi-objective stochastic optimization is proposed being applied to find a trade-off among all objectives. To speed up market clearing process, a scenario generation method is suggested for modeling wind speed volatility. Using Monte Carlo simulation method, eight indices are introduced and effectiveness of the proposed stochastic algorithm is evaluated.
Keywords :
Monte Carlo methods; optimisation; power generation dispatch; power generation faults; power generation reliability; power markets; reactive power; Monte Carlo simulation; ancillary services dispatch; coupled energy; disturbance occurrence; electricity markets; market clearing process; market payment; multiobjective stochastic energy; multiobjective stochastic optimization; power system emission; preventive actions; reactive power dispatch; reactive power reserve; reliable operation; scenario generation method; spider area; transmission congestion probability; voltage security margin; wind speed volatility; Optimization; Power system stability; Reactive power; Security; Stochastic processes; Wind power generation; Wind speed; Coupled electricity markets; multi-objective optimization; spider area; system security; wind power volatility;
Conference_Titel :
Innovative Smart Grid Technologies Conference (ISGT), 2014 IEEE PES
Conference_Location :
Washington, DC
DOI :
10.1109/ISGT.2014.6816458