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首页> 外文期刊>電気学会論文誌 B:電力·エネルギー部門誌 >Nonlinear Excitation Control of Two Sets of Adjustable Speed Generators/Motors at Rotary Type Frequency Converter Station for Performance Improvement of Power System Dynamics
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Nonlinear Excitation Control of Two Sets of Adjustable Speed Generators/Motors at Rotary Type Frequency Converter Station for Performance Improvement of Power System Dynamics

机译:旋转式变频器站两组可调速发电机/电动机的非线性励磁控制,以提高电力系统动力学性能

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摘要

There are 50 Hz and 60 Hz power systems in Japan, which are interconnected by power electronics based static type frequency converter station. Frequency converter can be realized by using Adjustable Speed Generators/Motors (ASGMs), which are excited by AC voltage, and so-called rotary type frequency converter. The rotary type frequency converter can also function as a power system stabilizer by effectively utilizing rotational energy stored in rotors. Nonlinear excitation control for the rotary type frequency converter is proposed to enhance performance of the rotational energy utilization and to improve stability of power system. The control performance is examined for a power system model by digital dynamic simulation. It is made clear that the proposed nonlinear excitation control is effective even though local information of the rotary type frequency converter is just used and that it has robustness against various load flow conditions.
机译:日本有50 Hz和60 Hz的电力系统,它们通过基于电力电子技术的静态型变频器站互连。可以通过使用由交流电压激励的可调速发电机/电动机(ASGM)和所谓的旋转式变频器来实现变频器。旋转型变频器还可以通过有效利用存储在转子中的旋转能量来充当电力系统稳定器。提出了一种用于旋转式变频器的非线性励磁控制,以提高旋转能量利用的性能并提高电力系统的稳定性。通过数字动态仿真检查电力系统模型的控制性能。显然,即使仅使用旋转式变频器的本地信息,所提出的非线性励磁控制也是有效的,并且对于各种潮流条件具有鲁棒性。

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