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A Practical Design of Fuzzy SMES Controller based on Synchronized Phasor Measurement for Interconnected Power System

机译:基于相量测量的互联电力系统模糊SMES控制器的实用设计

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摘要

Recently, fuzzy logic control has widely received attention in various power system applications, despite difficulties of obtaining its control rules and membership functions. Nowadays, power systems consist of multiple areas where load variations with abrupt changes always exist, and proper control rules and membership functions could hardly be achieved. This paper proposes a practical design of fuzzy logic controllers for superconducting magnetic energy storage (SMES) based on a wide area synchronized phasor measurement for enhancing the stability of an interconnected power system. Moreover, a heuristic method is applied for determining control rules and membership functions. The estimated model is determined via a simplified oscillation model for detection and assessment of an approximated inter-area oscillation mode. Finally, some simulation studies based on a two-area four-machine power system are carried out to examine the performance and effectiveness of the designed fuzzy SMES controller.
机译:近来,尽管难以获得模糊控制的控制规则和隶属函数,但是模糊逻辑控制已在各种电力系统应用中得到了广泛的关注。如今,电力系统由多个区域组成,在这些区域中总是存在负载变化且突变的情况,因此很难实现适当的控制规则和隶属功能。本文提出了一种基于广域同步相量测量的超导磁储能(SMES)模糊逻辑控制器的实用设计,以提高互连电力系统的稳定性。此外,将启发式方法应用于确定控制规则和隶属函数。估计的模型通过简化的振荡模型确定,用于检测和评估近似的区域间振荡模式。最后,基于两区域四机动力系统进行了一些仿真研究,以检验所设计的模糊SMES控制器的性能和有效性。

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