用于微型电网风力涡轮机的无稀土磁通开关发电机:综述

Tugberk Ozmen;Batı Eren Ergun;Mehmet Onur Gulbahce;Nevzat Onat
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引用次数: 0

摘要

传统的发电厂使用大功率同步、感应和直流发电机。随着以可再生能源发电为主的微电网在当今电网中的普及,人们对不同类型的发电机进行了研究。与传统的发电机结构不同,无刷结构的发电机,尤其是利用磁铁励磁的发电机得到了广泛的应用。磁通开关发电机(FSG)因其坚固的结构、有源定子设计和高功率密度能力而成为创新类型。然而,其设计通常依赖于稀土元素磁体。稀土磁体具有价格不确定、未来稀缺的潜在风险以及生产地域有限等负面特点,因此需要研究不依赖稀土磁体的 FSG。本研究全面探讨了不使用稀土元素磁体的 FSG。研究深入探讨了这些发电机的使用领域、运行机制、结构多样性以及文献中的对应内容。
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Rare-Earth Magnet Free Flux-Switching Generator for Wind Turbines in Micro-Grids: A Review
In traditional electricity generation plants, large powerful synchronous, induction, and direct current generators were used. With the proliferation of microgrids focused on electricity generation from renewable energy sources in today's power grids, studies have been conducted on different types of generators. Instead of the traditional generator architecture, generators with brushless structures, particularly those utilizing magnets for excitation, have found broad applications. Flux-switching generators (FSGs) are innovative types owing to their robust structure, active stator design, and high power density capabilities. However, designs have typically relied on rare-earth element magnets. Rare-earth magnets possess negative characteristics such as price uncertainty, the potential risk of scarcity in the future, and limited geographical production, leading to research on FSGs that do not depend on rare-earth magnets. This study comprehensively examines FSGs that do not use rare-earth element magnets. The study delves into the usage areas, operational mechanisms, structural diversities, and counterparts in the literature of these generators.
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