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首页> 外文期刊>Latin America Transactions, IEEE (Revista IEEE America Latina) >Determining Voltage Control Areas in Large Scale Power Systems Based on Eigenanalysis of the QV Sensitivity Matrix
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Determining Voltage Control Areas in Large Scale Power Systems Based on Eigenanalysis of the QV Sensitivity Matrix

机译:基于QV灵敏矩阵特征分析的大型电力系统中的电压控制区域

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摘要

Bulk power systems failures caused by voltage instability phenomena have become more frequent during the last years. Voltage control schemes capable of keeping voltage magnitude within specified limits, automatically, for a specific area of the power system can prevent this problem. The identification of potential voltage control areas of the power system is an essential part of voltage control scheme design. In some European countries these schemes have being contributing significantly both for safety and for the quality of operation. Regional and coordinated voltage control schemes are powerful mechanisms to avoid or mitigate this voltage instability phenomena. These control schemes known as secondary voltage control are based on pilot nodes and control areas, and their correct identifications are fundamental to an efficient voltage profile regulation. This paper proposes a methodology to identify voltage control areas based on the eigenvalues and eigenvectors of the load flow QV sensitivity matrix. The results are compared with the traditional voltage sensitivity analysis methods.
机译:由电压不稳定现象引起的批量电力系统故障在过去几年中变得更加频繁。能够在指定限度内保持电压的电压控制方案,自动为电力系统的特定区域可以防止此问题。电力系统的潜在电压控制区域的识别是电压控制方案设计的重要组成部分。在一些欧洲国家,这些计划对于安全和运作质量来说都是显着的贡献。区域和协调电压控制方案是避免或减轻该电压不稳定现象的强大机制。这些控制方案称为二次电压控制基于导频节点和控制区域,并且它们的正确识别是有效的电压曲线调节的基础。本文提出了一种基于载荷QV灵敏度矩阵的特征值和特征向量来识别电压控制区域的方法。将结果与传统的电压敏感性分析方法进行比较。

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