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An application of fuzzy voltage regulator to a static excitation system of a phase compound synchronous generator

机译:模糊稳压器在相同步发电机静态激励系统中的应用

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Phase compounding excitation systems of synchronous generators (SG) allow improving the voltage control quality under sharp load variations, and under short circuit on SG output. However, applying classical methods of automatic control theory and simplified linear models of the circuits for synthesizing automatic excitation regulators of these systems provides an optimum operation of SG only in the operating point neighborhood. Such drawbacks led to the introduction of new control systems based on adaptive control theory and the theory of fuzzy sets. In the current work, operations of a fuzzy voltage regulator (FVR) and of a traditional regulator of “strong action” applied to phase compound SG have been compared. The analysis of electromagnetic processes in SG has shown decreasing in voltage static error in the main operating modes of SG when using FVR. An advantage of this type of regulator is its better adaptability to parametric variations that occur in SG operating in power system with loading variations.
机译:同步发电机的相复合激发系统(SG)允许在急剧负载变化下提高电压控制质量,并在SG输出的短路下进行电压控制质量。然而,应用用于合成这些系统的自动激励调节器的电路的自动控制理论和简化线性模型的经典方法在操作点邻域中仅提供了SG的最佳操作。这种缺点导致了基于自适应控制理论的新控制系统和模糊集理论。在当前的工作中,已经比较了模糊电压调节器(FVR)的操作和传统的“强效应”的“强作用”,其应用于相化合物SG。 SG中电磁过程的分析显示使用FVR时SG主操作模式的电压静态误差下降。这种类型的调节器的优点是它对在具有加载变化的电力系统中操作的SG中发生的参数变化的更好的适应性。

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