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Equivalent Circuit Formulation for Solving AC Optimal Power Flow

机译:解决交流最佳功率流的等效电路公式

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In this paper, we formulate and solve the ac optimal power flow (AC-OPF) as an equivalent circuit problem in terms of current, voltage, and admittance state variables. The generator models are represented using conductance and susceptance state variables, and the operational and network constraints are translated to corresponding current/voltage constraints without loss of accuracy or generality. To understand the physics behind the optimality conditions of the optimization problem, we extend the linear adjoint circuit theory to translate them to equivalent circuit domain. It is shown that the operating point that defines the equivalent circuit solution precisely represents an AC-OPF solution. We then further exploit the equivalent circuit representation to use power flow simulation techniques to robustly solve the optimization problem. The efficiency of our approach is demonstrated for several AC-OPF benchmark test cases (up to 70 k buses) under nominal and congested operating conditions, and the runtime and scalability properties are presented.
机译:在本文中,我们就电流,电压和导纳状态变量而言,将交流最优功率流(AC-OPF)公式化并解决为等效电路问题。生成器模型使用电导和电纳状态变量表示,并且将操作和网络约束转换为相应的电流/电压约束,而不会损失准确性或通用性。为了了解优化问题的最优条件背后的物理原理,我们扩展了线性伴随电路理论,将其转换为等效电路域。结果表明,定义等效电路解决方案的工作点正好代表了AC-OPF解决方案。然后,我们进一步利用等效电路表示法来使用潮流仿真技术来稳健地解决优化问题。在额定和拥挤的工作条件下,针对几种AC-OPF基准测试案例(最多70 k总线)证明了我们方法的效率,并给出了运行时和可伸缩性属性。

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