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Chance-Constrained AC Optimal Power Flow: A Polynomial Chaos Approach

机译:机会约束交流最优潮流:多项式混沌方法

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As the share of renewables in the grid increases, the operation of power systems becomes more challenging. The present paper proposes a method to formulate and solve chance-constrained optimal power flow while explicitly considering the full nonlinear AC power flow equations and stochastic uncertainties. We use polynomial chaos expansion to model the effects of arbitrary uncertainties of finite variance, which enables to predict and optimize the system state for a range of operating conditions. We apply chance constraints to limit the probability of violations of inequality constraints. Our method incorporates a more detailed and a more flexible description of both the controllable variables and the resulting system state than previous methods. Two case studies highlight the efficacy of the method, with a focus on satisfaction of the AC power flow equations and on the accurate computation of moments of all random variables.
机译:随着电网中可再生能源份额的增加,电力系统的运行变得更具挑战性。本文提出了一种公式化和求解机会受限的最优潮流,同时明确考虑了整个非线性交流潮流方程和随机不确定性的方法。我们使用多项式混沌展开来对有限方差的任意不确定性的影响进行建模,从而可以预测和优化一系列工作条件下的系统状态。我们应用机会约束来限制违反不平等约束的可能性。与以前的方法相比,我们的方法结合了对可控变量和结果系统状态的更详细,更灵活的描述。有两个案例研究突出了该方法的有效性,重点是满足交流潮流方程的要求以及所有随机变量的矩的精确计算。

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