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Phase-shifted and interleaved angle control for doubly salient electro-magnetic machine

机译:双重突出电磁机的相移和交错角度控制

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Doubly salient electro-magnetic machine using traditional control method has large torque ripple for dead-time during commutation process and its special structure. During commutation, electro-magnetic torque and power will decrease quickly due to all switches are off states. In order to avoid the problem, a novel phase-shifted and interleaved angel control strategy was proposed in this paper. The control algorithm can eliminate dead-time and shape phase current of electric machine to improve output power and reduce torque ripple by adjusting phase-shifted angle and interleaved angle. In this paper, the mathematical model of the machine and working principle of the control strategy were described in detail. Moreover, phase-shifted and interleaved angle optimum method based on low torque ripple and large output power was also given. Finally, a “field-circuit” co-simulation model of motor driving system based on novel control method was built by electro-magnetic finite element analysis and transient solver of control circuit, and simulation results verify theory analysis.
机译:使用传统控制方法的双重凸极电磁机具有大的扭矩纹波,用于换向过程和其特殊结构。在换向期间,由于所有开关都关闭状态,电磁扭矩和功率将快速降低。为了避免问题,本文提出了一种新的相移和交错的天使控制策略。控制算法可以消除电机的死区时间和形状相电流,以通过调节相移角和交错角来提高输出功率并减小扭矩脉动。在本文中,详细描述了控制策略的机器数学模型和工作原理。此外,还给出了基于低扭矩脉动和大输出功率的相移和交织角度最佳方法。最后,基于新型控制方法的电动机驱动系统的“场电路”共仿真模型由电磁有限元分析和控制电路瞬态求解器构建,仿真结果验证了理论分析。

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