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An Adjustable Robust Optimization Approach for Contingency-Constrained Transmission Expansion Planning

机译:应急约束传输扩展规划的可调鲁棒优化方法

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摘要

This paper presents a novel approach for the transmission network expansion planning under generalized joint generation and transmission security criteria. The proposed methodology identifies the optimal expansion plan while modeling the power system operation under both normal and contingency states. An adjustable robust optimization approach is presented to circumvent the tractability issues associated with conventional contingency-constrained methods relying on explicitly modeling the whole contingency set. The adjustable robust model is formulated as a trilevel programming problem. The upper-level problem aims at minimizing the investment, operation, and system power imbalance costs. The middle-level problem identifies, for a given expansion plan, the contingency state leading to maximum power imbalance if any. Finally, the lower-level problem models the operator's best reaction for a given contingency and investment plan by minimizing the system power imbalance. The resulting trilevel program is solved by a primal-dual algorithm based on Benders decomposition combined with a column-and-constraint generation procedure. The proposed approach is finitely convergent to the optimal solution and provides a measure of the distance to the optimum. Simulation results show the superiority of the proposed methodology over conventional contingency-constrained models.
机译:本文提出了一种在广义联合发电和输电安全准则下进行输电网络扩展规划的新方法。所提出的方法可以在对正常和意外状态下的电力系统运行进行建模时,确定最佳扩展计划。提出了一种可调整的鲁棒性优化方法,以克服依赖于显式建模整个意外事件集的常规意外事件约束方法所涉及的易处理性问题。可调鲁棒模型被表述为三级编程问题。较高级别的问题旨在最小化投资,运营和系统电源不平衡成本。对于给定的扩展计划,中层问题确定了导致最大功率不平衡(如果有)的应急状态。最后,较低级别的问题通过最小化系统功率不平衡来模拟操作员对给定应急计划和投资计划的最佳反应。最终的三级程序通过基于Benders分解的原始对偶算法和列约束生成过程进行求解。所提出的方法在一定程度上收敛于最优解,并提供了到最优距离的度量。仿真结果表明,所提出的方法优于传统的应急约束模型。

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