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首页> 外文期刊>IEEE Transactions on Energy Conversion >Third order turboalternator electrical stability models with applications to subsynchronous resonance studies
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Third order turboalternator electrical stability models with applications to subsynchronous resonance studies

机译:三阶涡轮发电机电气稳定性模型及其在次同步共振研究中的应用

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摘要

This paper deals primarily with the application of standstill frequency response (SSFR) models to subsynchronous resonance (SSR) studies involving large turbogenerators. It has been already recognized that models derived from SSFR testing intrinsically define the so-called subsubtransient frequency domain as well as the transient and subtransient domains. The application of a variety of SSFR models has been described previously only for one machine. Another turbogenerator possessing markedly different damping characteristics is compared with the one referred to above. Comparisons are also made with an IEEE "Benchmark" model. Comments regarding the damping performance of each of these three machines in the SSR range are discussed as well as the effect of rotor and field on stator differential leakage fluxes. Proposals are made for consideration by the IEEE Power System Engineering and Electric Machinery Committees involved in benchmark SSR stability programs or in related generator modeling standards.
机译:本文主要涉及静止频率响应(SSFR)模型在涉及大型涡轮发电机的次同步共振(SSR)研究中的应用。已经认识到,从SSFR测试派生的模型本质上定义了所谓的子瞬态频域以及瞬态和子瞬态域。先前仅针对一台机器描述了各种SSFR模型的应用。将具有明显不同的阻尼特性的另一涡轮发电机与上述涡轮发电机进行比较。还与IEEE“基准”模型进行了比较。讨论了有关这三种电机在SSR范围内的阻尼性能的评论,以及转子和磁场对定子差分漏磁通的影响。提议供参与基准SSR稳定性计划或相关发电机建模标准的IEEE电力系统工程和电机委员会审议。

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