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首页> 外文期刊>International Journal of Power Electronics and Drive Systems >Rotary Switched Reluctance Actuator: A Review on Design Optimization and Its Control Methods
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Rotary Switched Reluctance Actuator: A Review on Design Optimization and Its Control Methods

机译:旋转开关磁阻执行器:设计优化及其控制方法综述

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A switched reluctance actuator (SRA) is a type of electromagnetic stepper actuator that is gaining popularity for its simple and rugged construction, ability of extremely high-speed operation and hazard-free operation. SRA gained supremacy over permanent magnet actuators due to the fact that its building material are relatively low cost compared to the expensive and rare permanent magnets. SRA is already making its debut in automotive, medical and high precision applications. However, many parties are still oblivious to this new age actuator. This paper reviews the latest literature in terms of journal articles and conference proceedings regarding the different design parameters and control method of SRA. The impact of the parameters on the performance of SRA are discussed in details to provide valuable insight. This paper also discussed the advantages of various novel SRA structure designs that prove to be a huge contribution to the future technology. It is found that several design parameters such as the air gap when kept minimum, increases torque value; while increasing number of phases in SRA minimizes torque ripples. Increased stator and rotor arc angles will increase torque, not to mention a larger excitation current can also achieve the same effect. Researches are often done through Finite Element Method (FEM) analysis to verify the optimized design parameters before fabrication, whilst experimental procedures are executed to verify the simulation results. To ensure smooth phase switching and improved torque output, intelligent controllers are employed in speed control and direct torque control (DTC) methods of SRA.
机译:开关磁阻致动器(SRA)是一种电磁步进致动器,因其结构简单,坚固耐用,极高的运行速度和无危险的运行而广受欢迎。由于SRA的建筑材料与昂贵且稀有的永磁体相比成本相对较低,因此SRA超越了永磁致动器。 SRA已经在汽车,医疗和高精度应用中首次亮相。但是,许多各方仍然没有注意到这个新时代的执行者。本文就SRA的不同设计参数和控制方法,从期刊文章和会议记录方面回顾了最新文献。详细讨论了参数对SRA性能的影响,以提供有价值的见解。本文还讨论了各种新颖的SRA结构设计的优点,这些优点被证明对未来技术做出了巨大贡献。结果发现,多个设计参数(例如,保持最小时的气隙)会增加扭矩值;同时增加SRA中的相数可最大程度地减小转矩波动。定子和转子电弧角的增加将增加转矩,更不用说更大的励磁电流也可以达到相同的效果。通常通过有限元方法(FEM)分析进行研究,以在制造之前验证优化的设计参数,同时执行实验程序以验证仿真结果。为了确保平稳的相位切换和改善的扭矩输出,SRA的速度控制和直接扭矩控制(DTC)方法中采用了智能控制器。

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