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Information Gap Decision Theory Based Preventive/Corrective Voltage Control for Smart Power Systems With High Wind Penetration

机译:基于信息间隙决策理论的高风电智能电网预防/纠正电压控制

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摘要

This paper proposes a new approach for preventive/corrective voltage control in smart power systems. Previous research works, which were based on deterministic methods, cannot be applied in the presence of high uncertainty caused by renewable generation and loads. Hence, new frameworks are required to handle the stochastic space of the problem. In this research, a robust approach based on the information gap decision theory is used to handle the uncertain space using the risk averse (RA) and opportunity seeker (OS) strategies. The RA strategy can provide an operation schedule for a given uncertainty budget in real time and with a required loading margin. The OS strategy helps us to decrease the operating costs in view of possible uncertainties. The proposed method was implemented according to the IEEE reliability test system. The results of this approach give the flexibility to select a degree of robustness considering the desired uncertainty budget.
机译:本文提出了一种用于智能电源系统中的预防性/纠正性电压控制的新方法。以前基于确定性方法的研究工作无法在可再生能源发电和负荷造成的高度不确定性的情况下应用。因此,需要新的框架来处理问题的随机空间。在这项研究中,基于信息缺口决策理论的鲁棒方法用于使用风险规避(RA)和机会寻求者(OS)策略来处理不确定空间。 RA策略可以实时提供给定不确定性预算的操作计划,并具有所需的负载裕度。鉴于可能的不确定性,操作系统策略可帮助我们降低运营成本。所提出的方法是根据IEEE可靠性测试系统实现的。考虑到所需的不确定性预算,此方法的结果可灵活选择鲁棒程度。

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