一种新型多叠pm -迟滞转子混合迟滞电机通用建模,分析和设计优化

Ali Akbar Nasiri, M. Mirsalim, A. Nasiri
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引用次数: 1

摘要

结构简单、坚固、自启动、运行平稳、噪声低、振动小是迟滞电机最具吸引力的优点,适用于高速恒转矩应用。磁化电流大、效率低、功率因数低是传统磁控电机的主要缺点。另一方面,永磁电机因其效率高、功率因数高、同步速度稳定性好而得到广泛应用。然而,永磁电机遭受没有启动扭矩和产生相当大的振荡扭矩。为了改善传统永磁电机的性能特点,本文提出了一种新型的多叠磁滞电机。在优化设计过程中,使用等效电路(EECs)来评估运行参数。以帝国主义竞争算法为求解器,建立了提高机器效率和功率因数,同时减小转动惯量、总体体积和速度振荡的多目标优化算法。通过综合考虑电、机械、磁、热约束,保证了所设计机床的可行性。最后,通过二维时步有限元分析验证了优化结构的合理性能。
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A Novel Hybrid Hysteresis Motor with Multi-Stack PM-Hysteresis Rotor; General Modeling, Analysis and Design Optimization
Simple and robust structure, self-starting and smooth operation with low noise and vibration are the most attractive advantages of the Hysteresis Motor (HM) which makes it suitable for high speed constant torque applications. High magnetizing current and low efficiency and power factor are the major drawbacks of the conventional HMs. On the other hand, the PM motors are widely used because of high efficiency, high power factor and relatively high stability at synchronous speed. However, PM motors suffer from having no starting torque and generating considerable oscillating torque. This paper presents a novel Multi-Stack PM-Hysteresis Motor in order to improve the performance characteristics of the conventional HM. In the optimal design procedure, the electrical equivalent circuits (EECs) are used for evaluating the operating parameters. A multi-objective optimization using Imperialist Competitive Algorithm as the solver is established for improving the efficiency and power factor of the machine as well as reducing the rotational inertia, overall volume and speed oscillations, simultaneously. The feasibility of the designed machine is guaranteed by considering the electrical, mechanical, magnetic and the thermal constraints. Finally, the appropriate performance of the optimized structure is validated using 2D time-stepping finite element analysis.
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