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A Decentralized Estimation of the Power System Bus Impedance Matrix Using the Jacobi Iterative Method

机译:基于Jacobi迭代法的电力系统母线阻抗矩阵的分散估计。

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Maintaining the reliable operation of complex systems that span a large geographical area, such as power systems, can be a challenge. In the future, the complexity of power systems will increase following the increase in energy production from renewable sources. Renewable sources are much more variable (less controllable) than their conventional counterparts; moreover, an additional source of variability will be the increasing number of prosumers. Maintaining a reliable operation, under such highly variable conditions, will require power systems to be much more flexible. Additionally, the mathematical models used in the analysis of such power systems must be adaptive and be updated with the changes in the operating conditions. This requirement poses a significant challenge. A distributed and decentralized framework offers a practical solution for such a challenge. In this paper, we are proposing an algorithm based on such a framework to evaluate the bus impedance matrix of a power system. The algorithm is based on the Jacobi iterative method for the solution of simultaneous linear equations. The proposed method is applied on the IEEE 14-bus and IEEE 30-bus systems and the results are discussed.
机译:维护跨越大地理区域的复杂系统(例如电力系统)的可靠运行可能是一个挑战。未来,随着可再生能源发电量的增加,电力系统的复杂性将增加。可再生能源比传统能源具有更大的可变性(可控性更差)。此外,可变性的另一个来源将是越来越多的生产者。在如此多变的条件下保持可靠的运行将要求电力系统更加灵活。另外,在这种电力系统的分析中使用的数学模型必须是自适应的,并随着操作条件的变化而更新。该要求带来了巨大的挑战。分布式和分散的框架为这种挑战提供了实用的解决方案。在本文中,我们提出了一种基于这种框架的算法来评估电力系统的总线阻抗矩阵。该算法基于Jacobi迭代方法来求解联立线性方程组。将该方法应用于IEEE 14总线和IEEE 30总线系统,并对结果进行了讨论。

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