直接驱动风能变流器用开关磁阻发电机的短磁通路

P. Lobato, J. A. Dente, J. Martins, A. Pires
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引用次数: 6

摘要

本文研究了基于不同范式的低速开关磁阻发电机(SRG)的设计。提出的设计程序利用相似定律的公式和比例模型来比较SRG磁性结构。除了对规则拓扑和相似拓扑进行评价外,本文还将比例模型应用于对具有不同电路图和磁路图特征的拓扑进行量纲分析。此外,通过引入一些约束条件,比例模型方法可以涵盖热变化和磁饱和等物理现象。这项工作的动机是SRG在直接驱动风力转换器和其他低速可再生能源系统中的应用。本文对直接驱动风力发电机组的短通径模块化拓扑结构进行了量纲分析。与常规机器相比,短通径拓扑结构可以优化效率和重量,从而获得单位质量功率的显着增益和更低的损耗。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Short flux-paths in switched reluctance generators for direct drive wind energy converters
This paper investigates the design of low speed Switched Reluctance Generators (SRG) based on a different paradigm. The proposed design procedure utilises the formulation of similarity laws and scale models to compare SRG magnetic structures. Besides evaluating regular and similar topologies the scale models are here applied in dimensional analysis of topologies distinguished by different characteristics of electric and magnetic circuits. Furthermore, the scale models methodology can cover physical phenomena like thermal changes and magnetic saturation by introducing some constraints. This work is motivated by the application of SRG to direct drive wind converters and other low speed renewable energy systems. The paper contains the illustration of dimensional analyses on a modular topology with short flux-paths designed for a direct drive wind turbine. Comparing with a regular machine, the short flux-paths topology can optimize the efficiency and weight taking benefits from the significant gain of power per unit of mass and lower losses.
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