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Chance-Constrained System of Systems Based Operation of Power Systems

机译:基于机会约束系统的电力系统运行

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In this paper, a chance-constrained system of systems (SoS) based decision-making approach is presented for stochastic scheduling of power systems encompassing active distribution grids. Based on the concept of SoS, the independent system operator (ISO) and distribution companies (DISCOs) are modeled as self-governing systems. These systems collaborate with each other to run the entire power system in a secure and economic manner. Each self-governing system accounts for its local reserve requirements and line flow constraints with respect to the uncertainties of load and renewable energy resources. A set of chance constraints are formulated to model the interactions between the ISO and DISCOs. The proposed model is solved by using analytical target cascading (ATC) method, a distributed optimization algorithm in which only a limited amount of information is exchanged between collaborative ISO and DISCOs. In this paper, a 6-bus and a modified IEEE 118-bus power systems are studied to show the effectiveness of the proposed algorithm.
机译:在本文中,提出了一种基于机会受限系统的决策方法,该方法用于包含有源配电网的电力系统的随机调度。基于SoS的概念,将独立系统运营商(ISO)和分销公司(DISCO)建模为自治系统。这些系统相互协作,以安全,经济的方式运行整个电源系统。每个自我管理系统都考虑到其本地储备要求和有关负荷和可再生能源不确定性的线路流量限制。制定了一组机会约束来对ISO和DISCO之间的交互进行建模。通过使用分析目标级联(ATC)方法解决了该模型,该方法是一种分布式优化算法,其中在协作ISO和DISCO之间仅交换有限数量的信息。本文研究了6总线和改进的IEEE 118总线电源系统,以证明所提出算法的有效性。

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