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Robust SCUC Considering Continuous/Discrete Uncertainties and Quick-Start Units: A Two-Stage Robust Optimization With Mixed-Integer Recourse

机译:考虑连续/离散不确定性和快速启动单元的鲁棒SCUC:采用混合整数求和的两阶段鲁棒优化

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This paper presents a comprehensive two-stage robust security-constrained unit commitment (SCUC) approach, which minimizes the operation cost of the base case while guaranteeing that the robust solution can be adaptively and securely adjusted in response to continuous load and wind uncertainty intervals as well as discrete generation and transmission contingency security criteria. In addition, corrective capabilities of both non-quick-start and quick-start units are rigorously formulated. Specifically, unit commitment of quick-start units is adaptively adjusted in the recourse stage for satisfying security constraints under various uncertainties, which introduces mixed-integer recourse to the proposed two-stage robust SCUC model. The proposed model is solved by the combination of modified Benders decomposition (BD) method and column-and-constraint generation (C&CG) algorithm, which decompose the original problem into a master UC problem for the base case and security checking subproblems for uncertainties. Numerical case studies on the modified IEEE 118-bus system illustrate the effectiveness of the proposed robust SCUC approach. Although the modified BD does not provide the tightest lower bound and may not guarantee the global optimality, robustness performance tests indicate that a reasonable threshold on the violation of security checking subproblems would guarantee good enough solutions from engineering point of view.
机译:本文提出了一种全面的两阶段鲁棒安全性约束单位承诺(SCUC)方法,该方法可最大程度地降低基本案例的运营成本,同时确保可以根据连续的负载和风不确定性区间对自适应解决方案进行自适应和安全地调整。以及离散的发电和输电应急安全标准。此外,还严格制定了非快速启动和快速启动装置的校正功能。具体来说,快速启动单元的单位承诺在追索阶段会进行自适应调整,以满足各种不确定性下的安全约束,从而将混合整数追索引入到所提出的两阶段鲁棒SCUC模型中。该模型通过结合改进的Benders分解(BD)方法和列和约束生成(C&CG)算法进行求解,将原始问题分解为基本情况下的主UC问题和不确定性的安全检查子问题。修改后的IEEE 118总线系统的数字案例研究说明了所提出的鲁棒SCUC方法的有效性。尽管修改后的BD不能提供最严格的下限并且不能保证全局最优,但是健壮性性能测试表明,从安全角度来看,对违反安全检查子问题的合理阈值可以保证足够好的解决方案。

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