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Speed-sensorless control strategy for multi-phase induction generator in wind energy conversion systems

机译:风能转换系统中多相感应发电机的无速度传感器控制策略

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Renewable energy sources, especially wind energy conversion systems (WECS), exhibit constant growth. Increase in power and installed capacity led to advances in WECS topologies. Multi-phase approach presents a new development direction, with several key advantages over three-phase systems. Paired with a sensorless control strategy, multi-phase machines are expected to take primacy over standard solutions. This paper presents speed sensorless vector control of an asymmetrical six-phase induction generator based on a model reference adaptive system (MRAS). Suggested topology and developed control algorithm show that sensorless control can yield appropriate dynamic characteristics for the use in WECS with increase in reliability and robustness. [Projekat Ministarstva nauke Republike Srbije, br. III 042004: Smart Electricity Distribution Grids Based on Distribution Management System and Distributed Generation].
机译:可再生能源,尤其是风能转换系统(WECS)呈现出持续增长的趋势。功率和安装容量的增加导致WECS拓扑的进步。多阶段方法提出了一个新的发展方向,与三相系统相比具有多个关键优势。结合无传感器控制策略,多相电机有望超越标准解决方案。本文提出了一种基于模型参考自适应系统(MRAS)的非对称六相感应发电机的无速度传感器矢量控制。建议的拓扑结构和已开发的控制算法表明,无传感器控制可以为WECS使用提供适当的动态特性,从而提高可靠性和鲁棒性。 [Projekat Ministarstva nauke Republike Srbije,br。 III 2004年4月:基于配电管理系统和分布式发电的智能配电网]。

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