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Comparative study on the static and dynamic characteristics of four types of PMFCLs for large capacity applications

机译:大容量应用中四种PMFCL静态和动态特性的比较研究

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摘要

Permanent-Magnet-Biased Saturation Based Fault Current Limiter (PMFCL) may find early applications in high-voltage and large capacity power systems due to prominent advantages such as compactness, small size, reliable and safe operation, and zero reset time. The prevailing topologies and the operating principles of the PMFCLs are elucidated in the paper. Theoretical analysis on both the static and dynamic characteristics of different modes of PMFCLs is carried out comparatively, in which new concepts of effective magnetic flux density and magnetic field intensity are proposed to describe the overall impacts of the magnetic field on the current limiting capacity of the PMFCLs. Based on theoretical analysis and mathematical deduction, equivalent magnetic circuits and equations are established, which presents invaluable fundamentals for further study on the operating mechanism of different modes of PMFCLs as well as optimization of the fault current limiting topology design.
机译:基于永磁偏置的基于饱和的故障电流限制器(PMFCL)由于其紧凑,体积小,可靠和安全的操作以及零复位时间等显着优势而可以在高压和大容量电力系统中找到早期应用。本文阐明了PMFCL的主要拓扑和工作原理。比较分析了不同模式的PMFCL的静态和动态特性,提出了有效磁通密度和磁场强度的新概念,以描述磁场对PMFCL限流能力的总体影响。 PMFCL。在理论分析和数学推导的基础上,建立了等效磁路和方程,为进一步研究PMFCL的不同模式的工作机理以及故障限流拓扑设计的优化提供了宝贵的基础。

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