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Security-Constrained Unit Commitment With Volatile Wind Power Generation

IEEE Transactions on Power Systems · 2008 · Vol. 23(3) · pp. 1319–1327
Jianhui WangMohammad ShahidehpourZuyi Li

Abstract

<para xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink"> This paper presents a security-constrained unit commitment (SCUC) algorithm which takes into account the intermittency and volatility of wind power generation. The UC problem is solved in the master problem with the forecasted intermittent wind power generation. Next, possible scenarios are simulated for representing the wind power volatility. The initial dispatch is checked in the subproblem and generation redispatch is considered for satisfying the hourly volatility of wind power in simulated scenarios. If the redispatch fails to mitigate violations, Benders cuts are created and added to the master problem to revise the commitment solution. The iterative process between the commitment problem and the feasibility check subproblem will continue until simulated wind power scenarios can be accommodated by redispatch. Numerical simulations indicate the effectiveness of the proposed SCUC algorithm for managing the security of power system operation by taking into account the intermittency and volatility of wind power generation. </para>

Electric Power System OptimizationOptimal Power Flow DistributionPower System Reliability and MaintenanceIntermittencyPower system simulationWind powerVolatility (finance)Mathematical optimizationEconomic dispatchComputer scienceElectric power systemOperations researchElectricity generation
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