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Advanced modeling and analysis of the loading capability limits of doubly-fed induction generators

机译:双馈感应发电机负荷能力极限的高级建模和分析

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This paper presents an improved mathematical model required for evaluation of the steady-state power characteristics and loading capability limits of doubly-fed induction generators (DFIGs). Unlike the previous models, this model takes into consideration the effect of the losses, rotor power flow, and power factor settings of the grid-side converter (GSC). The impact of various variables and parameters on the loading capability is determined through detailed analysis of the loading capability limits as well as a parametric analysis. Simulation results show that DFIGs can provide a continuous controllable reactive power support to electrical grids. In addition, the results set rules for enhancing the reactive power capability of DFIGs based on its sensitivity to various parameters and variables of the machine and its controls. Although, squirrel-cage induction-generators (SCIGs) that connected directly to the grid do not have a reactive power capability and their reactive power consumption is uncontrollable, its loading characteristics are also presented for illustrating the value of the partial-scale converter in operational flexibility enhancement in DFIGs based systems.
机译:本文提出了一种改进的数学模型,用于评估双馈感应发电机(DFIG)的稳态功率特性和负载能力极限。与以前的模型不同,此模型考虑了电网侧变流器(GSC)的损耗,转子功率流和功率因数设置的影响。通过对负载能力限制进行详细分析以及进行参数分析,可以确定各种变量和参数对负载能力的影响。仿真结果表明,DFIG可以为电网提供连续的可控无功功率支持。此外,结果基于DFIG对机器及其控制的各种参数和变量的敏感性,设置了增强DFIG无功功率能力的规则。尽管直接连接到电网的鼠笼式感应发电机(SCIG)不具有无功功率能力,并且其无功功耗不可控制,但其负载特性也可用于说明部分比例转换器在运行中的价值基于DFIG的系统的灵活性增强。

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