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首页> 外文期刊>IEEE transactions on industrial informatics >Information-Gap Decision Theory for Robust Security-Constrained Unit Commitment of Joint Renewable Energy and Gridable Vehicles
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Information-Gap Decision Theory for Robust Security-Constrained Unit Commitment of Joint Renewable Energy and Gridable Vehicles

机译:信息缺口决策理论,用于可再生能源和可夹达车辆的强大安全受限单位承诺

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摘要

This paper presents a new framework, utilizing information-gap decision theory (IGDT), for multiobjective robust security-constrained unit commitment of generating units in the presence of wind farms and gridable vehicles. Both the wind power and load demand uncertainties are considered, and modeled using a biobjective model. As the main advantage, the framework enables the system operator to take an appropriate operational decision with respect to the extremity of each uncertainty. The proposed problem is solved using a normal boundary intersection technique. Subsequently, VIsekriterijumska optimizacija i KOmpromisno Resenje (VIKOR), a decision-making tool, is utilized to choose the best Pareto optimal solution. Finally, the IGDT-based framework presented in this paper is validated using a six-bus test system, the IEEE Reliability Test System with 24 buses, and the IEEE 118-bus system.
机译:本文提出了一种新的框架,利用信息缺口决策理论(IGDT),用于在存在风电场和可容纳车辆的情况下产生单位的多目标稳健的安全约束单位承诺。风电和负载需求不确定性都被考虑,并使用生物起模型进行建模。作为主要优点,该框架使系统操作员能够对每个不确定性的肢体采取适当的操作决策。使用普通边界交叉技术解决了所提出的问题。随后,Visekriterijumska OptimizaCija i Kompromisno Resenje(Vikor)是一种决策工具,用于选择最好的帕累托最优解决方案。最后,使用六巴士测试系统,IEEE可靠性测试系统和IEEE 118总线系统验证了本文中提出的基于IGDT的框架。

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