Title :
Probabilistic Model of Payment Cost Minimization Considering Wind Power and Its Uncertainty
Author :
Yao Xu ; Qinran Hu ; Fangxing Li
Author_Institution :
Dept. of Electr. Eng. & Comput. Sci., Univ. of Tennessee (UT), Knoxville, TN, USA
Abstract :
The penetration of wind energy sources to power systems has significantly increased in recent years. With variable and uncertain wind power output, the payment and market-clearing price (MCP) may vary in different cases. In this paper, a methodology to quantitatively model the payment cost minimization (PCM) considering the effects of wind power from a probabilistic viewpoint is presented. The autoregressive moving average (ARMA) method with normal distribution of wind forecast error is used to model a time series of wind speed. Based on the wind turbine power curve, the probability distribution of wind power output can be obtained. Then, Monte Carlo simulation (MCS) is used to produce random samples of wind speed, and the genetic algorithm is applied to solve PCM for each sample. The proposed methodology and its solution are verified with simulation studies of two sample systems. The probabilistic distribution results can give consumers an overview of how much they should pay in a probabilistic sense. Further, the simulation results can serve as a lookup table to provide useful input for more refined unit commitment, and also provide a benchmark for future research works on PCM considering wind power.
Keywords :
Monte Carlo methods; genetic algorithms; time series; wind power; Monte Carlo simulation; autoregressive moving average method; genetic algorithm; market-clearing price; payment cost minimization; power systems; probabilistic model; probability distribution; wind energy sources; wind forecast error; wind power output; wind speed time series; wind turbine power curve; Autoregressive processes; Generators; Genetic algorithms; Phase change materials; Probabilistic logic; Wind power generation; Wind speed; Bid cost minimization (BCM); Monte Carlo simulation (MCS); deregulated electricity market; genetic algorithm; market clearing price (MCP); normal distribution; payment cost minimization (PCM); renewable energy;
Journal_Title :
Sustainable Energy, IEEE Transactions on
DOI :
10.1109/TSTE.2013.2242908