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Algebraic and Parametric Solvers for the Power Flow Problem: Towards Real-Time and Accuracy-Guaranteed Simulation of Electric Systems

机译:潮流问题的代数和参数解法器:朝着实时和精度保证的电气系统仿真

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The power flow model performs the analysis of electric distribution and transmission systems. With this statement at hand, in this work we present a summary of those solvers for the power flow equations, in both algebraic and parametric version. The application of the Alternating Search Direction method to the power flow problem is also detailed. This results in a family of iterative solvers that combined with Proper Generalized Decomposition technique allows to solve the parametric version of the equations. Once the solution is computed using this strategy, analyzing the network state or solving optimization problems, with inclusion of generation in real-time, becomes a straightforward procedure since the parametric solution is available. Complementing this approach, an error strategy is implemented at each step of the iterative solver. Thus, error indicators are used as an stopping criteria controlling the accuracy of the approximation during the construction process. The application of these methods to the model IEEE 57-bus network is taken as a numerical illustration.
机译:潮流模型执行配电和输电系统的分析。有了这个陈述,在这项工作中,我们以代数形式和参数形式给出了这些潮流方程求解器的摘要。还详细介绍了交替搜索方向方法在潮流问题中的应用。这导致了一系列迭代求解器,这些迭代求解器与适当的广义分解技术相结合,可以求解方程式的参数形式。一旦使用该策略计算了解决方案,就可以分析网络状态或解决优化问题(包括实时生成),这是一个简单的过程,因为可以使用参数化解决方案。作为这种方法的补充,在迭代求解器的每个步骤都实施了错误策略。因此,误差指示器被用作控制施工过程中近似精度的停止标准。这些方法在模型IEEE 57总线网络中的应用以数字方式说明。

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