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Design and simulation of synchronous generator excitation system using buck converter at motor generator trainer model LEM-MGS

机译:电机发电机训练器模型LEM-MGS中使用降压转换器同步发电机励磁系统的设计与仿真

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The generator is the instruments which a method of converting mechanical energy into electrical energy. Energy conversion in generator is possible only if generator excitation exist. Generator excitation defines generator output voltage and reactive power. Synchronous generator are designed to run at specific speed to produce voltage at specific frequency. Generator excitation system is described in this paper. The system is based on a buck converter which control the dc excitation voltage by adjusting the duty cycle. Result of the simulation are obtained. This results shows the generator output voltage Vl= 387V with dc excitation voltage from buck converter Vdc= 84.5V. Duty cycle required is 37.2% at 15 kHz switching frequency. In this paper, a generator excitation system with PSIM model is used.
机译:发电机是将机械能转换成电能的方法的仪器。仅当存在发电机激励时,发电机中的能量转换都是可能的。发电机励磁定义发电机输出电压和无功功率。同步发电机设计成以特定速度运行以在特定频率下产生电压。本文描述了发电机励磁系统。该系统基于降压转换器,通过调整占空比来控制DC激励电压。获得模拟的结果。该结果显示发电机输出电压V. l = 387V带降压转换器V的直流励磁电压V. dc = 84.5V。需要占空比为15 kHz开关频率为37.2 %。本文使用了一种具有PSIM模型的发电机励磁系统。

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