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A State-Independent Linear Power Flow Model With Accurate Estimation of Voltage Magnitude

机译:精确估计电压幅值的独立于状态的线性潮流模型

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摘要

Linearized power flow models are of great interest in power system studies such as contingency analyses and reliability assessments, especially for large-scale systems. One of the most popular models—the classical DC power flow model—is widely used and praised for its state independence, robustness, and computational efficiency. Despite its advantages, however, the DC power flow model fails to consider reactive power or bus voltage magnitude. This paper closes this gap by proposing a decoupled linearized power flow (DLPF) model with respect to voltage magnitude and phase angle. The model is state independent but is distinguished by its high accuracy in voltage magnitude. Moreover, this paper presents an in-depth analysis of the DLPF model with the purpose of accelerating its computation speed, leading to the fast DLPF (FDLPF) model. The approximation that is applied to obtain the FDLPF model from the DLPF model is justified by a theoretical derivation and numerical tests. The proposed methods are provably accurate and robust for several cases, including radial distribution systems, meshed large-scale transmission systems and ill-conditioned systems. Finally, expressions for sensitivity with regard to MW flow and bus voltage are provided as a potential application.
机译:线性潮流模型在电力系统研究中非常感兴趣,例如权变分析和可靠性评估,尤其是对于大型系统。最流行的模型之一-经典的直流潮流模型-因其状态独立性,鲁棒性和计算效率而得到广泛使用和赞誉。尽管有其优点,但是直流潮流模型并未考虑无功功率或母线电压幅度。本文通过提出关于电压幅度和相位角的去耦线性化潮流(DLPF)模型来弥合这一差距。该模型是独立于状态的,但以其电压幅度的高精度而著称。此外,本文还对DLPF模型进行了深入分析,旨在加快其计算速度,从而建立快速DLPF(FDLPF)模型。通过理论推导和数值测试证明了从DLPF模型获得FDLPF模型的近似值是合理的。所提出的方法在包括径向分布系统,网状大型传输系统和病态系统在内的几种情况下被证明是准确且稳健的。最后,提供了关于兆瓦流量和母线电压的灵敏度表达式作为潜在的应用。

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