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Dual-Pulse Mode Control of a High-Speed Doubly Salient Electromagnetic Machine for Loss Reduction and Speed Range Extension

机译:双脉冲模式控制高速双重凸电磁机,用于减少损耗和速度范围扩展

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摘要

In this article, a dual-pulse mode control of a high-speed doubly salient electromagnetic machine (DSEM) for efficiency improvement over a wide speed range is investigated and implemented. The dual-pulse mode control method and operation principle are introduced. The influence of excitation angles and field current on the operation performance is analyzed by finite-element method based on the back electromotive force (EMF) and inductance characteristics. The loss distribution for various speed and load torque requirement is attained, and the control parameters are optimized. The excitation angle can reduce the back EMF at high speed through transformer EMF and flux-weakening armature reaction. A prototype of 12/8-pole DSEM drive system is developed and dual-pulse mode control in high-speed operation under low dc-link voltage is implemented. Both the simulated and measured results show that the torque capacity of the DSEM is improved and the loss is reduced over a wide speed range.
机译:在本文中,研究了在宽速度范围内进行高速双重凸电磁机(DSEM)的双脉冲模式控制,并进行了效率的效率。引入了双脉冲模式控制方法和操作原理。基于背部电动势(EMF)和电感特性,通过有限元方法分析激发角度和场电流对操作性能的影响。实现了各种速度和负载扭矩要求的损耗分布,并优化了控制参数。激励角可以通过变压器EMF和磁通弱电枢反应以高速降低反电动势。开发了12/8极DSEM驱动系统的原型,并在低直流 - 链路电压下开发了12/8极DSEM驱动系统的双脉冲模式控制。模拟和测量结果都表明,改善了DSEM的扭矩容量,并且在宽速度范围内降低了损耗。

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