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Experimental investigation of a Doubly-Excited Flux-Switching Machine for Aircraft DC Power Generation

机译:用于飞机直流发电的双重激励磁通开关机的实验研究

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This paper presents an experimental study on a new design of a Doubly-Excited Flux-Switching Machine (DEFSM) proposed for variable speed DC power generation in future aircraft. This machine uses excitation coils associated with permanent magnets to control the flux-linkage. This gives the possibility of using a diode bridge rectifier which is more reliable than an active bridge. After presenting its design and some of its main characteristics, an experimental investigation of the electromagnetic and thermal performances has been performed on a 3 kW prototype. It is shown that the generated power can be easily controlled using the excitation current which is very interesting for wide-speed-range applications. The unique design of the stator makes it possible to have a low remanent back EMF. This characteristic makes this machine inherently safe in case of fault since no flux weakening is needed. The thermal analysis has shown that the permanent magnets can be kept at relatively low temperatures which makes them more resistant to demagnetization. All of this makes the DEFSM a strong candidate for future aircraft power generation.
机译:本文介绍了在未来飞机中为可变速度直流发电提出的双重激发磁通开关机(DECSM)的新设计的实验研究。该机器使用与永磁体相关的励磁线圈来控制磁通连杆。这给出了使用二极管桥式整流器的可能性,该二极管桥式整流器比有效桥更可靠。在提出其设计和其一些主要特征之后,在3kW原型上进行了对电磁和热性能的实验研究。结果表明,可以使用激励电流容易地控制产生的功率,这对于宽速度范围应用非常有趣。定子的独特设计使得可以具有低剩余的反电动势。这种特性使这款机器在故障情况下使这款机器自然安全,因为不需要磁通量削弱。热分析表明,永磁体可以保持在相对低的温度下,使得它们更耐受去除。所有这一切都使得缺陷成为未来飞机发电的强大候选者。

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