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首页> 外文期刊>Electric Power Applications, IET >Two-phase high-performance control of a reliable stand-alone induction generator
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Two-phase high-performance control of a reliable stand-alone induction generator

机译:可靠的独立感应发电机的两相高性能控制

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摘要

The study presents a significant development of an advanced control strategy for stand-alone three-phase induction generators. The system under study consists of a squirrel-cage induction generator driven mechanically by an internal combustion engine and electrically by a fault-tolerant converter coupled with a LC filter. As a novelty, in this study three low-cost electrical contactors are introduced in order to re-arrange the converter topology after a fault occurrence and a proper re-starting procedure is developed, allowing the converter to operate with only two legs. The control architecture is mainly described with respect to this last operating condition, evidencing its intrinsic robustness. The study focuses on the composite control of the converter and the prime mover in order to improve the dynamic assessment of the whole system. The converter control is designed around the sliding mode technique, due to its attractive performance, especially as far as parameter uncertainties are concerned. In order to validate the theoretical framework, this study presents the first ever made experimental tests of this system with reference to a generation unit of about 10 kVA. The results confirm the high capability of the proposed system in regulating voltage and frequency with very good dynamic features.
机译:该研究提出了独立三相感应发电机高级控制策略的重大发展。所研究的系统由鼠笼式感应发电机组成,鼠笼式感应发电机由内燃机机械驱动,由与LC滤波器耦合的容错转换器电驱动。作为一种新颖性,在本研究中,引入了三种低成本的电接触器,以便在故障发生后重新布置转换器拓扑,并开发出适当的重新启动程序,从而允许转换器仅用两个支路即可工作。主要针对最后的工作条件描述了控制体系结构,以证明其固有的鲁棒性。该研究集中在变流器和原动机的复合控制上,以改善整个系统的动态评估。转换器控制由于其吸引人的性能而围绕滑模技术进行设计,尤其是在涉及参数不确定性方面。为了验证理论框架,本研究以约10 kVA的发电单元为参考,介绍了该系统的首次实验测试。结果证实了该系统在调节电压和频率方面具有很高的动态性能,具有很高的能力。

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