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Spinning and non-spinning reserve allocation for stochastic security constrained unit Commitment

机译:随机安全性受约束的单位承诺的旋转和非旋转储备分配

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This paper proposes a formulation for a stochastic security constrained unit commitment, dispatch and reserve scheduling, considering N-1 security and non-spinning reserves. We employ a randomized optimization technique that is based on scenario generation of the uncertain variables, in this case the wind power, and offers probabilistic certificates regarding the robustness properties of the resulting solution. To demonstrate the efficacy of the proposed methodology, we carry out a simulation based study on the IEEE 30 bus system comparing the proposed formulation to other variants, as well as examine its behavior on networks with different congestion levels. In all case studies, we verify empirically, via Monte Carlo simulations, the probabilistic performance of our solution methodology.
机译:针对N-1安全性和非旋转性储备,本文提出了一种随机安全约束单元承诺,调度和后备调度的公式。我们采用了基于不确定变量(在这种情况下为风力发电)的场景生成的随机优化技术,并提供了有关所得解决方案的鲁棒性的概率证明。为了证明所提出的方法的有效性,我们在IEEE 30总线系统上进行了基于仿真的研究,将所提出的公式与其他变体进行了比较,并研究了其在具有不同拥塞级别的网络上的行为。在所有案例研究中,我们都通过蒙特卡洛模拟经验地验证了我们解决方案方法的概率性能。

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