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首页> 外文期刊>Journal of control, automation and electrical systems >A Potential Function for the Power Flow in DC Microgrids: An Analysis of the Uniqueness and Existence of the Solution and Convergence of the Algorithms
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A Potential Function for the Power Flow in DC Microgrids: An Analysis of the Uniqueness and Existence of the Solution and Convergence of the Algorithms

机译:DC微电网中电流的潜在功能:分析唯一性和算法溶液的唯一性和存在

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摘要

The power flow equations in DC microgrids are nonlinear due to the presence of constant power terminals. In this context, a rigorous demonstration of the convergence and uniqueness of the solution for Newton's method is required. This problem is particularly important in islanded microgrids, where the power flow method determines the equilibrium point, which in turn is used for other analyses such as stability, optimal operation, and reliability. In this paper, we present a new concept associated with power flow equations, namely the potential function of the power flow. This function allows transforming the power flow problem into an optimization model and uses convex analysis for determining its convergence and the uniqueness of the solution. Being a scalar function, the potential of the power flow can give valuable geometrical insights on the problem. In addition, the optimization approach can be used to solve the power flow problem considering inequality constraints. Simulation results demonstrate the applicability of this approach in practice.
机译:由于存在恒定功率端子,DC微电普林中的功率流量方程是非线性的。在这种情况下,需要严格的牛顿方法解决方案的收敛性和唯一性的演示。该问题在岛状微电网中尤为重要,其中功率流量方法确定平衡点,又用于其他分析,例如稳定性,最佳操作和可靠性。在本文中,我们提出了一种与电流方程相关的新概念,即功率流的潜在功能。该功能允许将电力流问题转换为优化模型,并使用凸分析来确定其趋同和解决方案的唯一性。作为标量函数,电流的潜力可以对问题提供有价值的几何洞察。此外,优化方法可用于解决考虑不等式约束的功率流问题。仿真结果表明了这种方法在实践中的适用性。

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