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首页> 外文期刊>Energy Conversion, IEEE Transactions on >Design and Control Strategies of an Induction-Machine-Based Flywheel Energy Storage System Associated to a Variable-Speed Wind Generator
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Design and Control Strategies of an Induction-Machine-Based Flywheel Energy Storage System Associated to a Variable-Speed Wind Generator

机译:与变速风力发电机相关的基于感应机的飞轮储能系统的设计和控制策略

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摘要

Flywheel energy storage systems (FESSs) improve the quality of the electric power delivered by wind generators, and help these generators contributing to the ancillary services. Presently, FESSs containing a flux-oriented controlled induction machine (IM) are mainly considered for this kind of application. The paper proposes the direct torque control (DTC) for an IM-based FESS associated to a variable-speed wind generator, and proves through simulation and experimental results that it could be a better alternative. This DTC application entails two specific aspects: 1) the IM must operate in the flux-weakening region, and 2) it must shift quickly and repeatedly between motoring and generating operation modes. DTC improvement for increasing the FESS efficiency, when it operates at small power values, is discussed. Some aspects concerning the flywheel design and the choice of the filter used in the FESS supervisor are also addressed.
机译:飞轮储能系统(FESS)提高了风力发电机输出的电能质量,并帮助这些发电机为辅助服务做出了贡献。目前,对于这类应用,主要考虑的是包含磁通定向受控感应电机(IM)的FESS。本文提出了与变速风力发电机相关的基于IM的FESS的直接转矩控制(DTC),并通过仿真和实验结果证明了它可能是更好的选择。此DTC应用程序涉及两个特定方面:1)IM必须在弱磁通区域中运行,以及2)它必须在电动和发电运行模式之间快速重复地转换。讨论了DTC在小功率值下运行时为提高FESS效率而进行的改进。还介绍了有关飞轮设计和FESS管理器中使用的过滤器选择的某些方面。

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