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Security-constrained dispatch with controllable loads for integrating stochastic wind energy

机译:受安全约束的调度和可控制的负载,用于集成随机风能

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This paper presents a bi-level consumer-utility optimization model to schedule an energy consumption pattern of controllable loads in the face of a time varying price function depending on system conditions and market operations. The controllable loads are classified into three types based on their natures and operating characteristics for an upper-level consumer's problem. To formulate the stochastic wind generators, a security-constrained optimal power flow (SCOPF) model is proposed for a lower-level utility's problem to consider various wind power scenarios. We then convert the bi-level model into a single-level of mathematical program with equilibrium constraints' (MPECs) problem to obtain the optimal load scheduling results. Finally, a simple case study is conducted to demonstrate the feasibility of the method.
机译:本文提出了一个两级消费者-效用优化模型,用于根据系统条件和市场运营情况,在面对时变价格函数的情况下调度可控负载的能耗模式。针对上级消费者的问题,可控制负载根据其性质和操作特性分为三类。为了制定随机风力发电机,针对下级公用事业的问题,考虑了各种风力发电方案,提出了一种安全约束的最优潮流(SCOPF)模型。然后,我们将两级模型转换为具有均衡约束(MPEC)问题的单级数学程序,以获得最佳的负荷调度结果。最后,通过一个简单的案例研究来证明该方法的可行性。

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