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A Consequent-Pole Hybrid Exciter for Synchronous Generators

机译:同步发电机的后杆混合励磁机

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摘要

In low-to-medium power generating sets, a self-powered brushless excitation system is typically employed. This solution is cost-effective, simple and compact, but it suffers from an unreliable voltage build-up at start-up, a slow dynamic response and a relatively low efficiency for the exciter. The push towards more effective, reliable and efficient products has recently led to consider excitation systems equipped with permanent magnet exciters and controlled rotating converters, but their diffusion is limited by their higher complexity and cost. This article investigates the utilization of a hybrid excitation for the exciter, aiming to join the benefits of field windings and permanent magnets. As a case study, this concept is applied to a commercial mid-size generating set adopting an industrial perspective, aiming to maximize the benefits while minimizing the required modifications in the system design. After a preliminary analysis, a consequent-pole layout with surface-mounted bonded magnets is then selected as the most effective solution. Theoretical considerations, numerical analysis and experimental validation are reported to show that the hybrid excitation concept can actually lead to a significant reduction of the exciter field losses as well as to other appreciable side benefits with a very limited impact on the present design of the generating set.
机译:在低至中型发电机组中,通常采用自动无刷励磁系统。该解决方案具有成本效益,简单且紧凑,但它遭受了启动时的不可靠的电压积聚,动态响应慢的动态响应和升级器的效率相对较低。推动更有效,可靠和高效的产品最近导致考虑配备有永磁谐波和受控旋转转换器的励磁系统,但它们的扩散受其较高复杂性和成本的限制。本文调查了利用激励器的混合动力励磁,旨在加入现场绕组和永磁体的益处。作为一个案例研究,该概念应用于采用工业角度的商业中型生成集,旨在最大限度地提高益处,同时最小化系统设计中所需的修改。在初步分析之后,然后选择具有表面安装的粘合磁体的随后的极点布局作为最有效的解决方案。据报道,理论考虑,数值分析和实验验证表明,混合励磁概念实际上可以导致激励磁场损耗的显着降低以及对当前发电机的当前设计的影响非常有限。

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