Interval arithmetic based optimal curtailment for infeasible SCED considering wind power uncertainties

Tao Ding, Can Huang, R. Bo, Runxin Li, Zhigang Yang, F. Li, Hongbin Sun
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引用次数: 10

Abstract

Security constrained economic dispatch (SCED) is an important tool for ISOs/RTOs to achieve economic power system operation in day-ahead and real-time markets. However, the wind generation uncertainty varying within a large range may make the SCED model unsolvable under certain scenarios. Thus, curtailment is utilized in this work to avoid the infeasibility in the presence of wind power uncertainty. It is found that the uncertainty set is affected by the curtailment restriction which is modeled as an interval number. By the use of interval arithmetic and big M approach, we construct a mixed integer linear programming (MILP) with the objective of minimizing the total curtailment costs, while guaranteeing the SCED to be feasible when wind power varies within its uncertainty set. Numerical results from a 118-bus test system over 24 time periods verify the effectiveness of this proposed method.
考虑风电不确定性的不可行的SCED优化弃风
安全约束经济调度是iso / rto在日前和实时市场中实现电力系统经济运行的重要工具。然而,风力发电的不确定性在较大范围内变化,可能使SCED模型在某些情况下无法求解。因此,在本工作中使用弃风来避免风电不确定性存在时的不可行性。发现不确定性集受以区间数表示的限电约束的影响。利用区间算法和大M方法,构造了一个以总弃风成本最小为目标的混合整数线性规划(MILP),同时保证当风电在不确定集中变化时,SCED是可行的。118总线24个时间段的测试结果验证了该方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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