首页> 外文会议>2014 IEEE PES General Meeting, Conference amp; Exposition >Bi-level linear programming based interval optimization for SCED in the presence of wind power uncertainty
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Bi-level linear programming based interval optimization for SCED in the presence of wind power uncertainty

机译:存在风力不确定性时基于双层线性规划的SCED区间优化

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Security constrained economic dispatch (SCED) is widely used in recent day-ahead market, especially when there is a large penetration of wind power in the power grid. In this work the wind generation uncertainty is modeled as an interval number, which leads to an interval optimal objective value (fuel costs) of the original SCED, as well as its interval optimal solution (each unit's generation). In order to obtain the true upper and lower bound of the interval optimal objective value and solution, a bi-level programming model is initialized so that the combinatorial nature of bi-level programming can be observed through the study of the single-level reformulation obtained in replacing the inner level problem with its KKT condition. Furthermore, an important global approach encompassing mixed integer linear programming (MILP) is captured by the complementarity slackness constraints resulting from the KKT condition. Numerical results from a 118-bus test system containing 24 time periods verifies the effectiveness of this proposed method.
机译:安全受限的经济调度(SCED)在最近的日前市场中被广泛使用,尤其是当风电在电网中的渗透率很高时。在这项工作中,将风力发电的不确定性建模为一个区间数,从而得出原始SCED的区间最优目标值(燃料成本)及其区间最优解(每个机组的发电量)。为了获得区间最优目标值和解的真实上限和下限,初始化了双层规划模型,以便通过研究获得的单层重构来观察双层规划的组合性质。用KKT条件代替内层问题。此外,由KKT条件引起的互补松弛约束限制了包含混合整数线性规划(MILP)的重要全局方法。来自包含24个时间段的118总线测试系统的数值结果验证了该方法的有效性。

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