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首页> 外文期刊>Journal of Electrical Engineering >Steady-State Analysis of Parallel-Operated Self-Excited Induction Generators Supplying an Unbalanced Load
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Steady-State Analysis of Parallel-Operated Self-Excited Induction Generators Supplying an Unbalanced Load

机译:提供不平衡负载的并联运行自激感应发电机的稳态分析

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Steady-State Analysis of Parallel-Operated Self-Excited Induction Generators Supplying an Unbalanced Load This paper proposed a multi-objective genetic algorithm (MOGA) based approach for determining the steady-state performance characteristics of three-phase self-excited induction generators (SEIGs) operating in parallel and supplying an unbalanced load. The symmetrical component theory is used for the transformation of a complex three-phase generators-capacitances-load system to a simple equivalent circuit. The MOGA has been employed for the determination of unknown variables by minimizing the impedance module of the equivalent circuit. Using this approach, effects of various parameters on the terminal voltage control characteristics are examined for two parallel SEIGs with C2C connection under a single phase load.
机译:提供不平衡负载的并联自激感应发电机的稳态分析本文提出了一种基于多目标遗传算法(MOGA)的方法来确定三相自激感应发电机(SEIG)的稳态性能)并联运行并提供不平衡的负载。对称分量理论用于将复杂的三相发电机-电容-负载系统转换为简单的等效电路。通过最小化等效电路的阻抗模块,MOGA已用于确定未知变量。使用这种方法,对于在单相负载下具有C2C连接的两个并联SEIG,检查了各种参数对端子电压控制特性的影响。

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