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Multiobjective optimal power flows to evaluate voltage security costs in power networks

机译:多目标最优潮流来评估电网中的电压安全成本

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In this paper, new optimal power flow (OPF) techniques are proposed based on multiobjective methodologies to optimize active and reactive power dispatch while maximizing voltage security in power systems. The use of interior point methods together with goal programming and linearly combined objective functions as the basic optimization techniques are explained in detail. The effects of minimizing operating costs, minimizing reactive power generation, and/or maximizing loading margins are then compared in both a 57-bus system and a 118-bus system, which are based on IEEE test systems and modeled using standard power flow models. The results obtained using the proposed mixed OPFs are compared and analyzed to suggest possible ways of costing voltage security in power systems.
机译:本文提出了一种基于多目标方法的最优最优潮流(OPF)技术,以优化有功和无功功率分配,同时最大限度地提高电力系统的电压安全性。详细说明了将内部点方法与目标编程和线性组合目标函数一起用作基本优化技术的情况。然后,在基于IEEE测试系统并使用标准潮流模型建模的57总线系统和118总线系统中,将最小化运营成本,最小化无功发电和/或最大化负载裕度的效果进行了比较。比较了使用建议的混合OPF所获得的结果,并提出了可能降低电力系统电压安全性的方法。

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