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Torque/Power Density Optimization of a Dual-Stator Brushless Doubly-Fed Induction Generator for Wind Power Application

机译:用于风力发电的双定子无刷双馈感应发电机的转矩/功率密度优化

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摘要

The brushless doubly-fed machine has attractive features to be employed in highly reliable wind turbine systems. However, the existing brushless doubly-fed topologies primarily work by the principle of modulation and suffer from low torque/power density, inferior efficiency, and high level of time and spatial harmonic distortion. This paper presents a simple design optimization approach for torque/power density optimization of a dual-stator brushless doubly-fed induction generator, which, unlike the modulation types, is inherently free of harmonic-related issues. An analytical average torque model with a full set of geometrical, electromagnetic, and thermal constraints is developed based on the power flow of generating operation. The optimized results exhibit comparable torque per volume and torque per weight to standard industrial induction machines with the similar size, synchronous speed, and power loss per-unit area. Mechanical considerations, manufacturing costs, and control aspects are also discussed to show the high potential in superseding existing doubly-fed induction generators. Finite-element analysis and experimental results of a 3.7-kW prototype are used to validate the effectiveness of the optimization.
机译:无刷双馈电机具有吸引人的功能,可用于高度可靠的风力涡轮机系统。但是,现有的无刷双馈拓扑主要是通过调制原理来工作的,并且存在转矩/功率密度低,效率低以及时间和空间谐波失真高的问题。本文为双定子无刷双馈感应发电机的转矩/功率密度优化提供了一种简单的设计优化方法,与调制类型不同,它固有地没有谐波相关的问题。基于发电操作的功率流,开发了具有全套几何,电磁和热约束的分析平均转矩模型。优化的结果显示出与标准工业感应电机相比每单位体积的扭矩和每单位重量的扭矩,具有相似的尺寸,同步速度和单位面积功率损耗。还讨论了机械方面的考虑因素,制造成本和控制方面,以显示出取代现有双馈感应发电机的巨大潜力。 3.7 kW原型机的有限元分析和实验结果用于验证优化的有效性。

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