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Network-constrained thermal unit commitment fortexhybrid AC/DC transmission grids under wind power uncertainty

机译:风电不确定性下混合动力交直流输电电网的网络约束热力单元承诺

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摘要

The day-ahead energy and reserve management considering transmission restrictions and voltage security limits is a challenging task for large-scale power systems in the presence of volatile renewable energy sources. In this paper, a two-stage robust optimization model is proposed for the joint scheduling of energy and reserve for hybrid AC/DC transmission grids. The optimal schedule, including the commitment, power dispatch, and reserve allocations is computed subject to the feasibility of nonlinear AC and DC network constraints under a specified set of scenarios. Furthermore, the proposed decomposition approach renders the second stage (network security evaluations) into standard optimal power flow problems, which addresses the scalability issues observed with existing methods. A second-order cone relaxation is applied to nonlinear AC and DC network constraints to improve the computational tractability. In simulations, the proposed robust optimization model is illustrated using a recently proposed hybrid AC/DC transmission grid architecture with a specific topology. The results demonstrate the effective utilization of the grid capacity to accommodate more demand and renewable energy sources. This hybrid AC/DC transmission grid architecture induces exactness of the convex relaxation, supporting the validity of the optimal day-ahead schedule. The efficiency and computational performance of the proposed method is compared to the existing literature and the robustness is verified using an out-of-sample analysis.
机译:在存在挥发性可再生能源的情况下,考虑到传输限制和电压安全限制的日前能源和储备管理对于大型电力系统而言是一项艰巨的任务。本文提出了一种两阶段鲁棒优化模型,用于混合AC / DC输电电网的能量和储备联合调度。最佳时间表(包括承诺,功率分配和备用分配)的计算取决于在一组特定方案下非线性交流和直流网络约束的可行性。此外,提出的分解方法使第二阶段(网络安全评估)成为标准的最佳潮流问题,解决了使用现有方法观察到的可扩展性问题。将二阶圆锥松弛应用于非线性AC和DC网络约束,以提高计算的可处理性。在仿真中,使用最近提出的具有特定拓扑的混合AC / DC传输网格架构来说明提出的鲁棒优化模型。结果表明,可以有效利用电网容量来满足更多需求和可再生能源。这种混合的AC / DC传输网格架构可引起凸松弛的准确性,从而支持最佳提前日程的有效性。将该方法的效率和计算性能与现有文献进行了比较,并通过样本外分析验证了鲁棒性。

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