Reserve Requirements for Wind Power Integration: A Scenario-Based Stochastic Programming Framework

Papavasiliou, Anthony;Oren, S.S.;O'Neill, R.P.
(2011) IEEE Transactions on Power Systems — Vol. 26, n° 4, p. 2197-2206 (2011)

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Authors
  • Papavasiliou, AnthonyUCLouvain
    Author
  • Oren, S.S.
    Author
  • O'Neill, R.P.
    Author
Abstract
We present a two-stage stochastic programming model for committing reserves in systems with large amounts of wind power. We describe wind power generation in terms of a representative set of appropriately weighted scenarios, and we present a dual decomposition algorithm for solving the resulting stochastic program. We test our scenario generation methodology on a model of California consisting of 122 generators, and we show that the stochastic programming unit commitment policy outperforms common reserve rules.
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Papavasiliou, A., Oren, S. S., & O’Neill, R. P. (2011). Reserve Requirements for Wind Power Integration: A Scenario-Based Stochastic Programming Framework. IEEE Transactions on Power Systems, 26(4), 2197-2206. https://doi.org/10.1109/TPWRS.2011.2121095 (Original work published 2011)