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Optimized Design and Simulation of an Air-Core Pulsed Alternator

机译:空芯脉冲交流发电机的优化设计与仿真

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摘要

The air-core pulsed alternator has been studied for more than three decades. However, its optimized design theories are still rarely reported. The performance of the air-core pulsed alternator-based pulsed-power system is often closely associated with the electrical machine parameters, the system structure, and the load requirements. The parametric optimization of this type of alternator has a very important influence on the performance. This paper focuses on the optimization theory of the air-core pulsed alternator design, including the optimization of the magnetic field distribution, the turn number of armature winding, and the turn number of field winding. The features of the magnetic field distribution in the air-core pulsed alternators are analyzed based on the analytical expressions. By designing a ferromagnetic shield put on the outside of the stator, the radial magnetic field component increases and the circumferential one decreases. The optimization principles of the winding turn numbers are also deduced based on the system circuit and operation mode. The optimization theories are verified by system-level dynamic simulation. Finally, some rules are summarized, which are beneficial to the optimized design of the air-core pulsed alternator.
机译:空心脉冲交流发电机已经研究了三十多年。但是,其优化的设计理论仍然鲜有报道。基于空心脉冲交流发电机的脉冲功率系统的性能通常与电机参数,系统结构和负载要求密切相关。这种交流发电机的参数优化对性能有非常重要的影响。本文着重研究空心脉冲交流发电机的优化理论,包括磁场分布,电枢绕组匝数和励磁绕组匝数的优化。基于解析表达式,对空心脉冲交流发电机中的磁场分布特征进行了分析。通过设计放置在定子外侧的铁磁屏蔽罩,径向磁场分量增加而周向磁场分量减小。还根据系统电路和工作模式推导了绕组匝数的优化原理。通过系统级动态仿真验证了优化理论。最后,总结了一些规则,这些规则有利于空心脉冲交流发电机的优化设计。

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