高渗透风电场随机安全约束机组承诺

M. Kia, S. H. Hosseini, Alireza Heidari, M. Lotfi, J. Catalão, M. Shafie‐khah, G. Osório, S. Santos
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引用次数: 3

摘要

安全可靠运行是电力系统改造面临的主要挑战之一。风能作为一种清洁和经济的能源越来越受到全球的关注,尽管它的间歇性带来了运营上的挑战。在本研究中,我们提出了一个在风力发电场存在的情况下电力和储备市场清仓的公式。与发电和线路中断相关的不确定性被建模为不同的系统场景。该公式将不同情况的成本纳入两阶段短期(24小时)清算过程,同时也考虑到不同类型的储备。然后对模型进行线性化处理,使其与标准的混合整数线性规划解相兼容,旨在使用尽可能少的变量和优化约束来求解安全约束的机组承诺问题。如图所示,这将加快优化问题的解决。在基于IEEE RTS1的案例研究中对模型进行了验证,并给出了结果并进行了讨论。
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Stochastic Security Constrained Unit Commitment with High Penetration of Wind Farms
Secure and reliable operation is one of the main challenges in restructured power systems. Wind energy has been gaining increasing global attention as a clean and economic energy source, despite the operational challenges its intermittency brings. In this study, we present a formulation for electricity and reserve market clearance in the presence of wind farms. Uncertainties associated with generation and line outages are modeled as different system scenarios. The formulation incorporates the cost of different scenarios in a two-stage short-term (24-hours) clearing process, also considering different types of reserve. The model is then linearized in order to be compatible with standard mixed-integer linear programming solvers, aiming at solving the security constrained unit-commitment problem using as few variables and optimization constraints as possible. As shown, this will expedite the solution of the optimization problem. The model is validated by testing it on a case study based on the IEEE RTS1, for which results are presented and discussed.
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